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authorGinger Bill <bill@gingerbill.org>2017-01-03 19:34:06 +0000
committerGinger Bill <bill@gingerbill.org>2017-01-03 19:34:06 +0000
commit883dd0642c377840e3baaca341ea147e53c2d2d5 (patch)
tree5fcd7603d3b6f6539cfa9c7861de4f6352021a42 /src
parent40f5dd56f7ab38a46341510e10a44fa9be0fa809 (diff)
Change prev ssa to llir;
Diffstat (limited to 'src')
-rw-r--r--src/build.c2
-rw-r--r--src/checker/stmt.c2
-rw-r--r--src/llir.c5809
-rw-r--r--src/main.c24
-rw-r--r--src/ssa.c5807
-rw-r--r--src/ssa_opt.c494
-rw-r--r--src/ssa_print.c1515
7 files changed, 5821 insertions, 7832 deletions
diff --git a/src/build.c b/src/build.c
index ab892ecff..f921cd222 100644
--- a/src/build.c
+++ b/src/build.c
@@ -149,7 +149,7 @@ String get_filepath_extension(String path) {
void init_build_context(BuildContext *bc) {
bc->ODIN_VENDOR = str_lit("odin");
- bc->ODIN_VERSION = str_lit("0.0.4");
+ bc->ODIN_VERSION = str_lit("0.0.5");
bc->ODIN_ROOT = odin_root_dir();
#if defined(GB_SYSTEM_WINDOWS)
diff --git a/src/checker/stmt.c b/src/checker/stmt.c
index 4f545c471..7aa0497fb 100644
--- a/src/checker/stmt.c
+++ b/src/checker/stmt.c
@@ -763,7 +763,6 @@ void check_stmt_internal(Checker *c, AstNode *node, u32 flags) {
}
}
}
-;
MapTypeAndToken seen = {0}; // NOTE(bill): Multimap
map_type_and_token_init(&seen, heap_allocator());
@@ -979,6 +978,7 @@ void check_stmt_internal(Checker *c, AstNode *node, u32 flags) {
}
Entity *tag_var = make_entity_variable(c->allocator, c->context.scope, ms->var->Ident, tt);
tag_var->flags |= EntityFlag_Used;
+ tag_var->Variable.is_immutable = true;
add_entity(c, c->context.scope, ms->var, tag_var);
add_entity_use(c, ms->var, tag_var);
}
diff --git a/src/llir.c b/src/llir.c
new file mode 100644
index 000000000..44865e342
--- /dev/null
+++ b/src/llir.c
@@ -0,0 +1,5809 @@
+typedef struct llirProcedure llirProcedure;
+typedef struct llirBlock llirBlock;
+typedef struct llirValue llirValue;
+typedef struct llirDebugInfo llirDebugInfo;
+
+typedef Array(llirValue *) llirValueArray;
+
+#define MAP_TYPE llirValue *
+#define MAP_PROC map_llir_value_
+#define MAP_NAME MapSsaValue
+#include "map.c"
+
+#define MAP_TYPE llirDebugInfo *
+#define MAP_PROC map_llir_debug_info_
+#define MAP_NAME MapSsaDebugInfo
+#include "map.c"
+
+typedef struct llirModule {
+ CheckerInfo * info;
+ BuildContext *build_context;
+ BaseTypeSizes sizes;
+ gbArena arena;
+ gbArena tmp_arena;
+ gbAllocator allocator;
+ gbAllocator tmp_allocator;
+ bool generate_debug_info;
+
+ u32 stmt_state_flags;
+
+ // String source_filename;
+ String layout;
+ // String triple;
+
+ MapEntity min_dep_map; // Key: Entity *
+ MapSsaValue values; // Key: Entity *
+ MapSsaValue members; // Key: String
+ MapString type_names; // Key: Type *
+ MapSsaDebugInfo debug_info; // Key: Unique pointer
+ i32 global_string_index;
+ i32 global_array_index; // For ConstantSlice
+
+ Entity * entry_point_entity;
+
+ Array(llirProcedure *) procs; // NOTE(bill): All procedures with bodies
+ llirValueArray procs_to_generate; // NOTE(bill): Procedures to generate
+} llirModule;
+
+// NOTE(bill): For more info, see https://en.wikipedia.org/wiki/Dominator_(graph_theory)
+typedef struct llirDomNode {
+ llirBlock * idom; // Parent (Immediate Dominator)
+ Array(llirBlock *) children;
+ i32 pre, post; // Ordering in tree
+} llirDomNode;
+
+
+typedef struct llirBlock {
+ i32 index;
+ String label;
+ llirProcedure *parent;
+ AstNode * node; // Can be NULL
+ Scope * scope;
+ isize scope_index;
+ llirDomNode dom;
+ i32 gaps;
+
+ llirValueArray instrs;
+ llirValueArray locals;
+
+ Array(llirBlock *) preds;
+ Array(llirBlock *) succs;
+} llirBlock;
+
+typedef struct llirTargetList llirTargetList;
+struct llirTargetList {
+ llirTargetList *prev;
+ llirBlock * break_;
+ llirBlock * continue_;
+ llirBlock * fallthrough_;
+};
+
+typedef enum llirDeferExitKind {
+ llirDeferExit_Default,
+ llirDeferExit_Return,
+ llirDeferExit_Branch,
+} llirDeferExitKind;
+typedef enum llirDeferKind {
+ llirDefer_Node,
+ llirDefer_Instr,
+} llirDeferKind;
+
+typedef struct llirDefer {
+ llirDeferKind kind;
+ isize scope_index;
+ llirBlock * block;
+ union {
+ AstNode *stmt;
+ // NOTE(bill): `instr` will be copied every time to create a new one
+ llirValue *instr;
+ };
+} llirDefer;
+
+struct llirProcedure {
+ llirProcedure * parent;
+ Array(llirProcedure *) children;
+
+ Entity * entity;
+ llirModule * module;
+ String name;
+ Type * type;
+ AstNode * type_expr;
+ AstNode * body;
+ u64 tags;
+
+ llirValueArray params;
+ Array(llirDefer) defer_stmts;
+ Array(llirBlock *) blocks;
+ i32 scope_index;
+ llirBlock * decl_block;
+ llirBlock * entry_block;
+ llirBlock * curr_block;
+ llirTargetList * target_list;
+ llirValueArray referrers;
+
+ i32 local_count;
+ i32 instr_count;
+ i32 block_count;
+};
+
+#define LLIR_STARTUP_RUNTIME_PROC_NAME "__$startup_runtime"
+#define LLIR_TYPE_INFO_DATA_NAME "__$type_info_data"
+#define LLIR_TYPE_INFO_DATA_MEMBER_NAME "__$type_info_data_member"
+
+
+#define LLIR_INSTR_KINDS \
+ LLIR_INSTR_KIND(Comment, struct { String text; }) \
+ LLIR_INSTR_KIND(Local, struct { \
+ Entity * entity; \
+ Type * type; \
+ bool zero_initialized; \
+ llirValueArray referrers; \
+ }) \
+ LLIR_INSTR_KIND(ZeroInit, struct { llirValue *address; }) \
+ LLIR_INSTR_KIND(Store, struct { llirValue *address, *value; }) \
+ LLIR_INSTR_KIND(Load, struct { Type *type; llirValue *address; }) \
+ LLIR_INSTR_KIND(PtrOffset, struct { \
+ llirValue *address; \
+ llirValue *offset; \
+ }) \
+ LLIR_INSTR_KIND(ArrayElementPtr, struct { \
+ llirValue *address; \
+ Type * result_type; \
+ llirValue *elem_index; \
+ }) \
+ LLIR_INSTR_KIND(StructElementPtr, struct { \
+ llirValue *address; \
+ Type * result_type; \
+ i32 elem_index; \
+ }) \
+ LLIR_INSTR_KIND(ArrayExtractValue, struct { \
+ llirValue *address; \
+ Type * result_type; \
+ i32 index; \
+ }) \
+ LLIR_INSTR_KIND(StructExtractValue, struct { \
+ llirValue *address; \
+ Type * result_type; \
+ i32 index; \
+ }) \
+ LLIR_INSTR_KIND(UnionTagPtr, struct { \
+ llirValue *address; \
+ Type *type; /* ^int */ \
+ }) \
+ LLIR_INSTR_KIND(UnionTagValue, struct { \
+ llirValue *address; \
+ Type *type; /* int */ \
+ }) \
+ LLIR_INSTR_KIND(Conv, struct { \
+ llirConvKind kind; \
+ llirValue *value; \
+ Type *from, *to; \
+ }) \
+ LLIR_INSTR_KIND(Jump, struct { llirBlock *block; }) \
+ LLIR_INSTR_KIND(If, struct { \
+ llirValue *cond; \
+ llirBlock *true_block; \
+ llirBlock *false_block; \
+ }) \
+ LLIR_INSTR_KIND(Return, struct { llirValue *value; }) \
+ LLIR_INSTR_KIND(Select, struct { \
+ llirValue *cond; \
+ llirValue *true_value; \
+ llirValue *false_value; \
+ }) \
+ LLIR_INSTR_KIND(Phi, struct { llirValueArray edges; Type *type; }) \
+ LLIR_INSTR_KIND(Unreachable, i32) \
+ LLIR_INSTR_KIND(UnaryOp, struct { \
+ Type * type; \
+ TokenKind op; \
+ llirValue *expr; \
+ }) \
+ LLIR_INSTR_KIND(BinaryOp, struct { \
+ Type * type; \
+ TokenKind op; \
+ llirValue *left, *right; \
+ }) \
+ LLIR_INSTR_KIND(Call, struct { \
+ Type * type; /* return type */ \
+ llirValue *value; \
+ llirValue **args; \
+ isize arg_count; \
+ }) \
+ LLIR_INSTR_KIND(VectorExtractElement, struct { \
+ llirValue *vector; \
+ llirValue *index; \
+ }) \
+ LLIR_INSTR_KIND(VectorInsertElement, struct { \
+ llirValue *vector; \
+ llirValue *elem; \
+ llirValue *index; \
+ }) \
+ LLIR_INSTR_KIND(VectorShuffle, struct { \
+ llirValue *vector; \
+ i32 * indices; \
+ i32 index_count; \
+ Type * type; \
+ }) \
+ LLIR_INSTR_KIND(StartupRuntime, i32) \
+ LLIR_INSTR_KIND(BoundsCheck, struct { \
+ TokenPos pos; \
+ llirValue *index; \
+ llirValue *len; \
+ }) \
+ LLIR_INSTR_KIND(SliceBoundsCheck, struct { \
+ TokenPos pos; \
+ llirValue *low; \
+ llirValue *high; \
+ bool is_substring; \
+ })
+
+#define LLIR_CONV_KINDS \
+ LLIR_CONV_KIND(trunc) \
+ LLIR_CONV_KIND(zext) \
+ LLIR_CONV_KIND(fptrunc) \
+ LLIR_CONV_KIND(fpext) \
+ LLIR_CONV_KIND(fptoui) \
+ LLIR_CONV_KIND(fptosi) \
+ LLIR_CONV_KIND(uitofp) \
+ LLIR_CONV_KIND(sitofp) \
+ LLIR_CONV_KIND(ptrtoint) \
+ LLIR_CONV_KIND(inttoptr) \
+ LLIR_CONV_KIND(bitcast)
+
+typedef enum llirInstrKind {
+ llirInstr_Invalid,
+#define LLIR_INSTR_KIND(x, ...) GB_JOIN2(llirInstr_, x),
+ LLIR_INSTR_KINDS
+#undef LLIR_INSTR_KIND
+} llirInstrKind;
+
+String const llir_instr_strings[] = {
+ {cast(u8 *)"Invalid", gb_size_of("Invalid")-1},
+#define LLIR_INSTR_KIND(x, ...) {cast(u8 *)#x, gb_size_of(#x)-1},
+ LLIR_INSTR_KINDS
+#undef LLIR_INSTR_KIND
+};
+
+typedef enum llirConvKind {
+ llirConv_Invalid,
+#define LLIR_CONV_KIND(x) GB_JOIN2(llirConv_, x),
+ LLIR_CONV_KINDS
+#undef LLIR_CONV_KIND
+} llirConvKind;
+
+String const llir_conv_strings[] = {
+ {cast(u8 *)"Invalid", gb_size_of("Invalid")-1},
+#define LLIR_CONV_KIND(x) {cast(u8 *)#x, gb_size_of(#x)-1},
+ LLIR_CONV_KINDS
+#undef LLIR_CONV_KIND
+};
+
+#define LLIR_INSTR_KIND(k, ...) typedef __VA_ARGS__ GB_JOIN2(llirInstr, k);
+ LLIR_INSTR_KINDS
+#undef LLIR_INSTR_KIND
+
+typedef struct llirInstr llirInstr;
+struct llirInstr {
+ llirInstrKind kind;
+
+ llirBlock *parent;
+ Type *type;
+
+ union {
+#define LLIR_INSTR_KIND(k, ...) GB_JOIN2(llirInstr, k) k;
+ LLIR_INSTR_KINDS
+#undef LLIR_INSTR_KIND
+ };
+};
+
+
+typedef enum llirValueKind {
+ llirValue_Invalid,
+
+ llirValue_Constant,
+ llirValue_ConstantSlice,
+ llirValue_Nil,
+ llirValue_TypeName,
+ llirValue_Global,
+ llirValue_Param,
+
+ llirValue_Proc,
+ llirValue_Block,
+ llirValue_Instr,
+
+ llirValue_Count,
+} llirValueKind;
+
+typedef struct llirValueConstant {
+ Type * type;
+ ExactValue value;
+} llirValueConstant;
+
+typedef struct llirValueConstantSlice {
+ Type * type;
+ llirValue *backing_array;
+ i64 count;
+} llirValueConstantSlice;
+
+typedef struct llirValueNil {
+ Type *type;
+} llirValueNil;
+
+typedef struct llirValueTypeName {
+ Type * type;
+ String name;
+} llirValueTypeName;
+
+typedef struct llirValueGlobal {
+ Entity * entity;
+ Type * type;
+ llirValue * value;
+ llirValueArray referrers;
+ bool is_constant;
+ bool is_private;
+ bool is_thread_local;
+ bool is_unnamed_addr;
+} llirValueGlobal;
+
+typedef struct llirValueParam {
+ llirProcedure *parent;
+ Entity * entity;
+ Type * type;
+ llirValueArray referrers;
+} llirValueParam;
+
+typedef struct llirValue {
+ llirValueKind kind;
+ i32 index;
+ union {
+ llirValueConstant Constant;
+ llirValueConstantSlice ConstantSlice;
+ llirValueNil Nil;
+ llirValueTypeName TypeName;
+ llirValueGlobal Global;
+ llirValueParam Param;
+ llirProcedure Proc;
+ llirBlock Block;
+ llirInstr Instr;
+ };
+} llirValue;
+
+gb_global llirValue *v_zero = NULL;
+gb_global llirValue *v_one = NULL;
+gb_global llirValue *v_zero32 = NULL;
+gb_global llirValue *v_one32 = NULL;
+gb_global llirValue *v_two32 = NULL;
+gb_global llirValue *v_false = NULL;
+gb_global llirValue *v_true = NULL;
+
+typedef enum llirAddrKind {
+ llirAddr_Default,
+ llirAddr_Vector,
+} llirAddrKind;
+
+typedef struct llirAddr {
+ llirValue * addr;
+ AstNode * expr; // NOTE(bill): Just for testing - probably remove later
+ llirAddrKind kind;
+ union {
+ struct { llirValue *index; } Vector;
+ };
+} llirAddr;
+
+llirAddr llir_make_addr(llirValue *addr, AstNode *expr) {
+ llirAddr v = {addr, expr};
+ return v;
+}
+llirAddr llir_make_addr_vector(llirValue *addr, llirValue *index, AstNode *expr) {
+ llirAddr v = llir_make_addr(addr, expr);
+ v.kind = llirAddr_Vector;
+ v.Vector.index = index;
+ return v;
+}
+
+
+
+typedef enum llirDebugEncoding {
+ llirDebugBasicEncoding_Invalid = 0,
+
+ llirDebugBasicEncoding_address = 1,
+ llirDebugBasicEncoding_boolean = 2,
+ llirDebugBasicEncoding_float = 3,
+ llirDebugBasicEncoding_signed = 4,
+ llirDebugBasicEncoding_signed_char = 5,
+ llirDebugBasicEncoding_unsigned = 6,
+ llirDebugBasicEncoding_unsigned_char = 7,
+
+ llirDebugBasicEncoding_member = 13,
+ llirDebugBasicEncoding_pointer_type = 15,
+ llirDebugBasicEncoding_typedef = 22,
+
+ llirDebugBasicEncoding_array_type = 1,
+ llirDebugBasicEncoding_enumeration_type = 4,
+ llirDebugBasicEncoding_structure_type = 19,
+ llirDebugBasicEncoding_union_type = 23,
+
+} llirDebugEncoding;
+
+typedef enum llirDebugInfoKind {
+ llirDebugInfo_Invalid,
+
+ llirDebugInfo_CompileUnit,
+ llirDebugInfo_File,
+ llirDebugInfo_Scope,
+ llirDebugInfo_Proc,
+ llirDebugInfo_AllProcs,
+
+ llirDebugInfo_BasicType, // basic types
+ llirDebugInfo_ProcType,
+ llirDebugInfo_DerivedType, // pointer, typedef
+ llirDebugInfo_CompositeType, // array, struct, enum, (raw_)union
+ llirDebugInfo_Enumerator, // For llirDebugInfo_CompositeType if enum
+ llirDebugInfo_GlobalVariable,
+ llirDebugInfo_LocalVariable,
+
+
+ llirDebugInfo_Count,
+} llirDebugInfoKind;
+
+typedef struct llirDebugInfo llirDebugInfo;
+struct llirDebugInfo {
+ llirDebugInfoKind kind;
+ i32 id;
+
+ union {
+ struct {
+ AstFile * file;
+ String producer;
+ llirDebugInfo *all_procs;
+ } CompileUnit;
+ struct {
+ AstFile *file;
+ String filename;
+ String directory;
+ } File;
+ struct {
+ llirDebugInfo *parent;
+ llirDebugInfo *file;
+ TokenPos pos;
+ Scope * scope; // Actual scope
+ } Scope;
+ struct {
+ Entity * entity;
+ String name;
+ llirDebugInfo *file;
+ TokenPos pos;
+ } Proc;
+ struct {
+ Array(llirDebugInfo *) procs;
+ } AllProcs;
+
+
+ struct {
+ String name;
+ i32 size;
+ i32 align;
+ llirDebugEncoding encoding;
+ } BasicType;
+ struct {
+ llirDebugInfo * return_type;
+ Array(llirDebugInfo *) param_types;
+ } ProcType;
+ struct {
+ llirDebugInfo * base_type;
+ llirDebugEncoding encoding;
+ } DerivedType;
+ struct {
+ llirDebugEncoding encoding;
+ String name;
+ String identifier;
+ llirDebugInfo * file;
+ TokenPos pos;
+ i32 size;
+ i32 align;
+ Array(llirDebugInfo *) elements;
+ } CompositeType;
+ struct {
+ String name;
+ i64 value;
+ } Enumerator;
+ struct {
+ String name;
+ String linkage_name;
+ llirDebugInfo *scope;
+ llirDebugInfo *file;
+ TokenPos pos;
+ llirValue *variable;
+ llirDebugInfo *declaration;
+ } GlobalVariable;
+ struct {
+ String name;
+ llirDebugInfo *scope;
+ llirDebugInfo *file;
+ TokenPos pos;
+ i32 arg; // Non-zero if proc parameter
+ llirDebugInfo *type;
+ } LocalVariable;
+ };
+};
+
+typedef struct llirGen {
+ llirModule module;
+ gbFile output_file;
+ bool opt_called;
+} llirGen;
+
+llirValue *llir_lookup_member(llirModule *m, String name) {
+ llirValue **v = map_llir_value_get(&m->members, hash_string(name));
+ if (v != NULL) {
+ return *v;
+ }
+ return NULL;
+}
+
+
+Type *llir_type(llirValue *value);
+Type *llir_instr_type(llirInstr *instr) {
+ switch (instr->kind) {
+ case llirInstr_Local:
+ return instr->Local.type;
+ case llirInstr_Load:
+ return instr->Load.type;
+ case llirInstr_StructElementPtr:
+ return instr->StructElementPtr.result_type;
+ case llirInstr_ArrayElementPtr:
+ return instr->ArrayElementPtr.result_type;
+ case llirInstr_PtrOffset:
+ return llir_type(instr->PtrOffset.address);
+ case llirInstr_Phi:
+ return instr->Phi.type;
+ case llirInstr_ArrayExtractValue:
+ return instr->ArrayExtractValue.result_type;
+ case llirInstr_StructExtractValue:
+ return instr->StructExtractValue.result_type;
+ case llirInstr_UnionTagPtr:
+ return instr->UnionTagPtr.type;
+ case llirInstr_UnionTagValue:
+ return instr->UnionTagValue.type;
+ case llirInstr_UnaryOp:
+ return instr->UnaryOp.type;
+ case llirInstr_BinaryOp:
+ return instr->BinaryOp.type;
+ case llirInstr_Conv:
+ return instr->Conv.to;
+ case llirInstr_Select:
+ return llir_type(instr->Select.true_value);
+ case llirInstr_Call: {
+ Type *pt = base_type(instr->Call.type);
+ if (pt != NULL) {
+ if (pt->kind == Type_Tuple && pt->Tuple.variable_count == 1) {
+ return pt->Tuple.variables[0]->type;
+ }
+ return pt;
+ }
+ return NULL;
+ } break;
+ case llirInstr_VectorExtractElement: {
+ Type *vt = llir_type(instr->VectorExtractElement.vector);
+ Type *bt = base_vector_type(vt);
+ GB_ASSERT(!is_type_vector(bt));
+ return bt;
+ } break;
+ case llirInstr_VectorInsertElement:
+ return llir_type(instr->VectorInsertElement.vector);
+ case llirInstr_VectorShuffle:
+ return instr->VectorShuffle.type;
+ }
+ return NULL;
+}
+
+Type *llir_type(llirValue *value) {
+ switch (value->kind) {
+ case llirValue_Constant:
+ return value->Constant.type;
+ case llirValue_ConstantSlice:
+ return value->ConstantSlice.type;
+ case llirValue_Nil:
+ return value->Nil.type;
+ case llirValue_TypeName:
+ return value->TypeName.type;
+ case llirValue_Global:
+ return value->Global.type;
+ case llirValue_Param:
+ return value->Param.type;
+ case llirValue_Proc:
+ return value->Proc.type;
+ case llirValue_Instr:
+ return llir_instr_type(&value->Instr);
+ }
+ return NULL;
+}
+
+Type *llir_addr_type(llirAddr lval) {
+ if (lval.addr != NULL) {
+ Type *t = llir_type(lval.addr);
+ GB_ASSERT(is_type_pointer(t));
+ return type_deref(t);
+ }
+ return NULL;
+}
+
+
+
+bool llir_is_blank_ident(AstNode *node) {
+ if (node->kind == AstNode_Ident) {
+ ast_node(i, Ident, node);
+ return is_blank_ident(i->string);
+ }
+ return false;
+}
+
+
+llirInstr *llir_get_last_instr(llirBlock *block) {
+ if (block != NULL) {
+ isize len = block->instrs.count;
+ if (len > 0) {
+ llirValue *v = block->instrs.e[len-1];
+ GB_ASSERT(v->kind == llirValue_Instr);
+ return &v->Instr;
+ }
+ }
+ return NULL;
+
+}
+
+bool llir_is_instr_terminating(llirInstr *i) {
+ if (i != NULL) {
+ switch (i->kind) {
+ case llirInstr_Return:
+ case llirInstr_Unreachable:
+ return true;
+ }
+ }
+
+ return false;
+}
+
+
+void llir_add_edge(llirBlock *from, llirBlock *to) {
+ array_add(&from->succs, to);
+ array_add(&to->preds, from);
+}
+
+void llir_set_instr_parent(llirValue *instr, llirBlock *parent) {
+ if (instr->kind == llirValue_Instr) {
+ instr->Instr.parent = parent;
+ }
+}
+
+llirValueArray *llir_value_referrers(llirValue *v) {
+ switch (v->kind) {
+ case llirValue_Global:
+ return &v->Global.referrers;
+ case llirValue_Param:
+ return &v->Param.referrers;
+ case llirValue_Proc: {
+ if (v->Proc.parent != NULL) {
+ return &v->Proc.referrers;
+ }
+ return NULL;
+ }
+ case llirValue_Instr: {
+ llirInstr *i = &v->Instr;
+ switch (i->kind) {
+ case llirInstr_Local:
+ return &i->Local.referrers;
+ }
+ } break;
+ }
+
+ return NULL;
+}
+
+
+
+////////////////////////////////////////////////////////////////
+//
+// @Make
+//
+////////////////////////////////////////////////////////////////
+
+void llir_module_add_value (llirModule *m, Entity *e, llirValue *v);
+llirValue *llir_emit_zero_init (llirProcedure *p, llirValue *address);
+llirValue *llir_emit_comment (llirProcedure *p, String text);
+llirValue *llir_emit_store (llirProcedure *p, llirValue *address, llirValue *value);
+llirValue *llir_emit_load (llirProcedure *p, llirValue *address);
+void llir_emit_jump (llirProcedure *proc, llirBlock *block);
+llirValue *llir_emit_conv (llirProcedure *proc, llirValue *value, Type *t);
+llirValue *llir_type_info (llirProcedure *proc, Type *type);
+llirValue *llir_build_expr (llirProcedure *proc, AstNode *expr);
+void llir_build_stmt (llirProcedure *proc, AstNode *node);
+llirValue *llir_build_cond (llirProcedure *proc, AstNode *cond, llirBlock *true_block, llirBlock *false_block);
+void llir_build_defer_stmt (llirProcedure *proc, llirDefer d);
+llirAddr llir_build_addr (llirProcedure *proc, AstNode *expr);
+void llir_build_proc (llirValue *value, llirProcedure *parent);
+void llir_gen_global_type_name(llirModule *m, Entity *e, String name);
+
+
+
+
+llirValue *llir_alloc_value(gbAllocator a, llirValueKind kind) {
+ llirValue *v = gb_alloc_item(a, llirValue);
+ v->kind = kind;
+ return v;
+}
+llirValue *llir_alloc_instr(llirProcedure *proc, llirInstrKind kind) {
+ llirValue *v = llir_alloc_value(proc->module->allocator, llirValue_Instr);
+ v->Instr.kind = kind;
+ proc->instr_count++;
+ return v;
+}
+llirDebugInfo *llir_alloc_debug_info(gbAllocator a, llirDebugInfoKind kind) {
+ llirDebugInfo *di = gb_alloc_item(a, llirDebugInfo);
+ di->kind = kind;
+ return di;
+}
+
+
+
+
+llirValue *llir_make_value_type_name(gbAllocator a, String name, Type *type) {
+ llirValue *v = llir_alloc_value(a, llirValue_TypeName);
+ v->TypeName.name = name;
+ v->TypeName.type = type;
+ return v;
+}
+
+llirValue *llir_make_value_global(gbAllocator a, Entity *e, llirValue *value) {
+ llirValue *v = llir_alloc_value(a, llirValue_Global);
+ v->Global.entity = e;
+ v->Global.type = make_type_pointer(a, e->type);
+ v->Global.value = value;
+ array_init(&v->Global.referrers, heap_allocator()); // TODO(bill): Replace heap allocator here
+ return v;
+}
+llirValue *llir_make_value_param(gbAllocator a, llirProcedure *parent, Entity *e) {
+ llirValue *v = llir_alloc_value(a, llirValue_Param);
+ v->Param.parent = parent;
+ v->Param.entity = e;
+ v->Param.type = e->type;
+ array_init(&v->Param.referrers, heap_allocator()); // TODO(bill): Replace heap allocator here
+ return v;
+}
+llirValue *llir_make_value_nil(gbAllocator a, Type *type) {
+ llirValue *v = llir_alloc_value(a, llirValue_Nil);
+ v->Nil.type = type;
+ return v;
+}
+
+
+
+llirValue *llir_make_instr_local(llirProcedure *p, Entity *e, bool zero_initialized) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_Local);
+ llirInstr *i = &v->Instr;
+ i->Local.entity = e;
+ i->Local.type = make_type_pointer(p->module->allocator, e->type);
+ i->Local.zero_initialized = zero_initialized;
+ array_init(&i->Local.referrers, heap_allocator()); // TODO(bill): Replace heap allocator here
+ llir_module_add_value(p->module, e, v);
+ return v;
+}
+
+
+llirValue *llir_make_instr_store(llirProcedure *p, llirValue *address, llirValue *value) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_Store);
+ llirInstr *i = &v->Instr;
+ i->Store.address = address;
+ i->Store.value = value;
+ return v;
+}
+
+llirValue *llir_make_instr_zero_init(llirProcedure *p, llirValue *address) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_ZeroInit);
+ llirInstr *i = &v->Instr;
+ i->ZeroInit.address = address;
+ return v;
+}
+
+llirValue *llir_make_instr_load(llirProcedure *p, llirValue *address) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_Load);
+ llirInstr *i = &v->Instr;
+ i->Load.address = address;
+ i->Load.type = type_deref(llir_type(address));
+ return v;
+}
+
+llirValue *llir_make_instr_array_element_ptr(llirProcedure *p, llirValue *address, llirValue *elem_index) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_ArrayElementPtr);
+ llirInstr *i = &v->Instr;
+ Type *t = llir_type(address);
+ GB_ASSERT(is_type_pointer(t));
+ t = base_type(type_deref(t));
+ GB_ASSERT(is_type_array(t) || is_type_vector(t));
+
+ Type *result_type = make_type_pointer(p->module->allocator, t->Array.elem);
+
+ i->ArrayElementPtr.address = address;
+ i->ArrayElementPtr.elem_index = elem_index;
+ i->ArrayElementPtr.result_type = result_type;
+
+ GB_ASSERT_MSG(is_type_pointer(llir_type(address)),
+ "%s", type_to_string(llir_type(address)));
+ return v;
+}
+llirValue *llir_make_instr_struct_element_ptr(llirProcedure *p, llirValue *address, i32 elem_index, Type *result_type) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_StructElementPtr);
+ llirInstr *i = &v->Instr;
+ i->StructElementPtr.address = address;
+ i->StructElementPtr.elem_index = elem_index;
+ i->StructElementPtr.result_type = result_type;
+
+ GB_ASSERT_MSG(is_type_pointer(llir_type(address)),
+ "%s", type_to_string(llir_type(address)));
+ return v;
+}
+llirValue *llir_make_instr_ptr_offset(llirProcedure *p, llirValue *address, llirValue *offset) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_PtrOffset);
+ llirInstr *i = &v->Instr;
+ i->PtrOffset.address = address;
+ i->PtrOffset.offset = offset;
+
+ GB_ASSERT_MSG(is_type_pointer(llir_type(address)),
+ "%s", type_to_string(llir_type(address)));
+ GB_ASSERT_MSG(is_type_integer(llir_type(offset)),
+ "%s", type_to_string(llir_type(address)));
+
+ return v;
+}
+
+
+
+llirValue *llir_make_instr_array_extract_value(llirProcedure *p, llirValue *address, i32 index) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_ArrayExtractValue);
+ llirInstr *i = &v->Instr;
+ i->ArrayExtractValue.address = address;
+ i->ArrayExtractValue.index = index;
+ Type *t = base_type(llir_type(address));
+ GB_ASSERT(is_type_array(t));
+ i->ArrayExtractValue.result_type = t->Array.elem;
+ return v;
+}
+
+llirValue *llir_make_instr_struct_extract_value(llirProcedure *p, llirValue *address, i32 index, Type *result_type) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_StructExtractValue);
+ llirInstr *i = &v->Instr;
+ i->StructExtractValue.address = address;
+ i->StructExtractValue.index = index;
+ i->StructExtractValue.result_type = result_type;
+ return v;
+}
+
+llirValue *llir_make_instr_union_tag_ptr(llirProcedure *p, llirValue *address) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_UnionTagPtr);
+ llirInstr *i = &v->Instr;
+ i->UnionTagPtr.address = address;
+ i->UnionTagPtr.type = t_int_ptr;
+ return v;
+}
+
+llirValue *llir_make_instr_union_tag_value(llirProcedure *p, llirValue *address) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_UnionTagValue);
+ llirInstr *i = &v->Instr;
+ i->UnionTagValue.address = address;
+ i->UnionTagValue.type = t_int_ptr;
+ return v;
+}
+
+llirValue *llir_make_instr_unary_op(llirProcedure *p, TokenKind op, llirValue *expr, Type *type) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_UnaryOp);
+ llirInstr *i = &v->Instr;
+ i->UnaryOp.op = op;
+ i->UnaryOp.expr = expr;
+ i->UnaryOp.type = type;
+ return v;
+}
+
+
+llirValue *llir_make_instr_binary_op(llirProcedure *p, TokenKind op, llirValue *left, llirValue *right, Type *type) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_BinaryOp);
+ llirInstr *i = &v->Instr;
+ i->BinaryOp.op = op;
+ i->BinaryOp.left = left;
+ i->BinaryOp.right = right;
+ i->BinaryOp.type = type;
+ return v;
+}
+
+llirValue *llir_make_instr_jump(llirProcedure *p, llirBlock *block) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_Jump);
+ llirInstr *i = &v->Instr;
+ i->Jump.block = block;
+ return v;
+}
+llirValue *llir_make_instr_if(llirProcedure *p, llirValue *cond, llirBlock *true_block, llirBlock *false_block) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_If);
+ llirInstr *i = &v->Instr;
+ i->If.cond = cond;
+ i->If.true_block = true_block;
+ i->If.false_block = false_block;
+ return v;
+}
+
+
+llirValue *llir_make_instr_phi(llirProcedure *p, llirValueArray edges, Type *type) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_Phi);
+ llirInstr *i = &v->Instr;
+ i->Phi.edges = edges;
+ i->Phi.type = type;
+ return v;
+}
+
+llirValue *llir_make_instr_unreachable(llirProcedure *p) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_Unreachable);
+ return v;
+}
+
+llirValue *llir_make_instr_return(llirProcedure *p, llirValue *value) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_Return);
+ v->Instr.Return.value = value;
+ return v;
+}
+
+llirValue *llir_make_instr_select(llirProcedure *p, llirValue *cond, llirValue *t, llirValue *f) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_Select);
+ v->Instr.Select.cond = cond;
+ v->Instr.Select.true_value = t;
+ v->Instr.Select.false_value = f;
+ return v;
+}
+
+llirValue *llir_make_instr_call(llirProcedure *p, llirValue *value, llirValue **args, isize arg_count, Type *result_type) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_Call);
+ v->Instr.Call.value = value;
+ v->Instr.Call.args = args;
+ v->Instr.Call.arg_count = arg_count;
+ v->Instr.Call.type = result_type;
+ return v;
+}
+
+llirValue *llir_make_instr_conv(llirProcedure *p, llirConvKind kind, llirValue *value, Type *from, Type *to) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_Conv);
+ v->Instr.Conv.kind = kind;
+ v->Instr.Conv.value = value;
+ v->Instr.Conv.from = from;
+ v->Instr.Conv.to = to;
+ return v;
+}
+
+llirValue *llir_make_instr_extract_element(llirProcedure *p, llirValue *vector, llirValue *index) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_VectorExtractElement);
+ v->Instr.VectorExtractElement.vector = vector;
+ v->Instr.VectorExtractElement.index = index;
+ return v;
+}
+
+llirValue *llir_make_instr_insert_element(llirProcedure *p, llirValue *vector, llirValue *elem, llirValue *index) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_VectorInsertElement);
+ v->Instr.VectorInsertElement.vector = vector;
+ v->Instr.VectorInsertElement.elem = elem;
+ v->Instr.VectorInsertElement.index = index;
+ return v;
+}
+
+llirValue *llir_make_instr_vector_shuffle(llirProcedure *p, llirValue *vector, i32 *indices, isize index_count) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_VectorShuffle);
+ v->Instr.VectorShuffle.vector = vector;
+ v->Instr.VectorShuffle.indices = indices;
+ v->Instr.VectorShuffle.index_count = index_count;
+
+ Type *vt = base_type(llir_type(vector));
+ v->Instr.VectorShuffle.type = make_type_vector(p->module->allocator, vt->Vector.elem, index_count);
+
+ return v;
+}
+
+llirValue *llir_make_instr_comment(llirProcedure *p, String text) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_Comment);
+ v->Instr.Comment.text = text;
+ return v;
+}
+
+llirValue *llir_make_instr_bounds_check(llirProcedure *p, TokenPos pos, llirValue *index, llirValue *len) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_BoundsCheck);
+ v->Instr.BoundsCheck.pos = pos;
+ v->Instr.BoundsCheck.index = index;
+ v->Instr.BoundsCheck.len = len;
+ return v;
+}
+llirValue *llir_make_instr_slice_bounds_check(llirProcedure *p, TokenPos pos, llirValue *low, llirValue *high, bool is_substring) {
+ llirValue *v = llir_alloc_instr(p, llirInstr_SliceBoundsCheck);
+ v->Instr.SliceBoundsCheck.pos = pos;
+ v->Instr.SliceBoundsCheck.low = low;
+ v->Instr.SliceBoundsCheck.high = high;
+ v->Instr.SliceBoundsCheck.is_substring = is_substring;
+ return v;
+}
+
+
+
+llirValue *llir_make_value_constant(gbAllocator a, Type *type, ExactValue value) {
+ llirValue *v = llir_alloc_value(a, llirValue_Constant);
+ v->Constant.type = type;
+ v->Constant.value = value;
+ return v;
+}
+
+
+llirValue *llir_make_value_constant_slice(gbAllocator a, Type *type, llirValue *backing_array, i64 count) {
+ llirValue *v = llir_alloc_value(a, llirValue_ConstantSlice);
+ v->ConstantSlice.type = type;
+ v->ConstantSlice.backing_array = backing_array;
+ v->ConstantSlice.count = count;
+ return v;
+}
+
+llirValue *llir_make_const_int(gbAllocator a, i64 i) {
+ return llir_make_value_constant(a, t_int, make_exact_value_integer(i));
+}
+llirValue *llir_make_const_i32(gbAllocator a, i64 i) {
+ return llir_make_value_constant(a, t_i32, make_exact_value_integer(i));
+}
+llirValue *llir_make_const_i64(gbAllocator a, i64 i) {
+ return llir_make_value_constant(a, t_i64, make_exact_value_integer(i));
+}
+llirValue *llir_make_const_bool(gbAllocator a, bool b) {
+ return llir_make_value_constant(a, t_bool, make_exact_value_bool(b != 0));
+}
+llirValue *llir_make_const_string(gbAllocator a, String s) {
+ return llir_make_value_constant(a, t_string, make_exact_value_string(s));
+}
+
+llirValue *llir_make_value_procedure(gbAllocator a, llirModule *m, Entity *entity, Type *type, AstNode *type_expr, AstNode *body, String name) {
+ llirValue *v = llir_alloc_value(a, llirValue_Proc);
+ v->Proc.module = m;
+ v->Proc.entity = entity;
+ v->Proc.type = type;
+ v->Proc.type_expr = type_expr;
+ v->Proc.body = body;
+ v->Proc.name = name;
+ array_init(&v->Proc.referrers, heap_allocator()); // TODO(bill): replace heap allocator
+
+ Type *t = base_type(type);
+ GB_ASSERT(is_type_proc(t));
+ array_init_reserve(&v->Proc.params, heap_allocator(), t->Proc.param_count);
+
+ return v;
+}
+
+llirBlock *llir_add_block(llirProcedure *proc, AstNode *node, char *label) {
+ Scope *scope = NULL;
+ if (node != NULL) {
+ Scope **found = map_scope_get(&proc->module->info->scopes, hash_pointer(node));
+ if (found) {
+ scope = *found;
+ } else {
+ GB_PANIC("Block scope not found for %.*s", LIT(ast_node_strings[node->kind]));
+ }
+ }
+
+ llirValue *v = llir_alloc_value(proc->module->allocator, llirValue_Block);
+ v->Block.label = make_string_c(label);
+ v->Block.node = node;
+ v->Block.scope = scope;
+ v->Block.parent = proc;
+
+ array_init(&v->Block.instrs, heap_allocator());
+ array_init(&v->Block.locals, heap_allocator());
+
+ array_init(&v->Block.preds, heap_allocator());
+ array_init(&v->Block.succs, heap_allocator());
+
+ llirBlock *block = &v->Block;
+
+ array_add(&proc->blocks, block);
+ proc->block_count++;
+
+ return block;
+}
+
+
+
+
+
+llirDefer llir_add_defer_node(llirProcedure *proc, isize scope_index, AstNode *stmt) {
+ llirDefer d = {llirDefer_Node};
+ d.scope_index = scope_index;
+ d.block = proc->curr_block;
+ d.stmt = stmt;
+ array_add(&proc->defer_stmts, d);
+ return d;
+}
+
+
+llirDefer llir_add_defer_instr(llirProcedure *proc, isize scope_index, llirValue *instr) {
+ llirDefer d = {llirDefer_Instr};
+ d.scope_index = proc->scope_index;
+ d.block = proc->curr_block;
+ d.instr = instr; // NOTE(bill): It will make a copy everytime it is called
+ array_add(&proc->defer_stmts, d);
+ return d;
+}
+
+
+
+llirValue *llir_add_module_constant(llirModule *m, Type *type, ExactValue value) {
+ gbAllocator a = m->allocator;
+ // gbAllocator a = gb_heap_allocator();
+
+ if (is_type_slice(type)) {
+ ast_node(cl, CompoundLit, value.value_compound);
+
+ isize count = cl->elems.count;
+ if (count == 0) {
+ return llir_make_value_nil(a, type);
+ }
+ Type *elem = base_type(type)->Slice.elem;
+ Type *t = make_type_array(a, elem, count);
+ llirValue *backing_array = llir_add_module_constant(m, t, value);
+
+
+ isize max_len = 7+8+1;
+ u8 *str = cast(u8 *)gb_alloc_array(a, u8, max_len);
+ isize len = gb_snprintf(cast(char *)str, max_len, "__csba$%x", m->global_array_index);
+ m->global_array_index++;
+
+ String name = make_string(str, len-1);
+
+ Entity *e = make_entity_constant(a, NULL, make_token_ident(name), t, value);
+ llirValue *g = llir_make_value_global(a, e, backing_array);
+ llir_module_add_value(m, e, g);
+ map_llir_value_set(&m->members, hash_string(name), g);
+
+ return llir_make_value_constant_slice(a, type, g, count);
+ }
+
+ return llir_make_value_constant(a, type, value);
+}
+
+llirValue *llir_add_global_string_array(llirModule *m, String string) {
+ // TODO(bill): Should this use the arena allocator or the heap allocator?
+ // Strings could be huge!
+ gbAllocator a = m->allocator;
+ // gbAllocator a = gb_heap_allocator();
+
+ isize max_len = 6+8+1;
+ u8 *str = cast(u8 *)gb_alloc_array(a, u8, max_len);
+ isize len = gb_snprintf(cast(char *)str, max_len, "__str$%x", m->global_string_index);
+ m->global_string_index++;
+
+ String name = make_string(str, len-1);
+ Token token = {Token_String};
+ token.string = name;
+ Type *type = make_type_array(a, t_u8, string.len);
+ ExactValue ev = make_exact_value_string(string);
+ Entity *entity = make_entity_constant(a, NULL, token, type, ev);
+ llirValue *g = llir_make_value_global(a, entity, llir_add_module_constant(m, type, ev));
+ g->Global.is_private = true;
+ // g->Global.is_unnamed_addr = true;
+ // g->Global.is_constant = true;
+
+ llir_module_add_value(m, entity, g);
+ map_llir_value_set(&m->members, hash_string(name), g);
+
+ return g;
+}
+
+
+
+
+llirValue *llir_add_local(llirProcedure *proc, Entity *e) {
+ llirBlock *b = proc->decl_block; // all variables must be in the first block
+ llirValue *instr = llir_make_instr_local(proc, e, true);
+ instr->Instr.parent = b;
+ array_add(&b->instrs, instr);
+ array_add(&b->locals, instr);
+ proc->local_count++;
+
+ // if (zero_initialized) {
+ llir_emit_zero_init(proc, instr);
+ // }
+
+ return instr;
+}
+
+llirValue *llir_add_local_for_identifier(llirProcedure *proc, AstNode *name, bool zero_initialized) {
+ Entity **found = map_entity_get(&proc->module->info->definitions, hash_pointer(name));
+ if (found) {
+ Entity *e = *found;
+ llir_emit_comment(proc, e->token.string);
+ return llir_add_local(proc, e);
+ }
+ return NULL;
+}
+
+llirValue *llir_add_local_generated(llirProcedure *proc, Type *type) {
+ GB_ASSERT(type != NULL);
+
+ Scope *scope = NULL;
+ if (proc->curr_block) {
+ scope = proc->curr_block->scope;
+ }
+ Entity *e = make_entity_variable(proc->module->allocator,
+ scope,
+ empty_token,
+ type);
+ return llir_add_local(proc, e);
+}
+
+llirValue *llir_add_param(llirProcedure *proc, Entity *e) {
+ llirValue *v = llir_make_value_param(proc->module->allocator, proc, e);
+#if 1
+ llirValue *l = llir_add_local(proc, e);
+ llir_emit_store(proc, l, v);
+#else
+ llir_module_add_value(proc->module, e, v);
+#endif
+ return v;
+}
+
+
+
+////////////////////////////////////////////////////////////////
+//
+// @Debug
+//
+////////////////////////////////////////////////////////////////
+
+llirDebugInfo *llir_add_debug_info_file(llirProcedure *proc, AstFile *file) {
+ if (!proc->module->generate_debug_info) {
+ return NULL;
+ }
+
+ GB_ASSERT(file != NULL);
+ llirDebugInfo *di = llir_alloc_debug_info(proc->module->allocator, llirDebugInfo_File);
+ di->File.file = file;
+
+ String filename = file->tokenizer.fullpath;
+ String directory = filename;
+ isize slash_index = 0;
+ for (isize i = filename.len-1; i >= 0; i--) {
+ if (filename.text[i] == '\\' ||
+ filename.text[i] == '/') {
+ break;
+ }
+ slash_index = i;
+ }
+ directory.len = slash_index-1;
+ filename.text = filename.text + slash_index;
+ filename.len -= slash_index;
+
+
+ di->File.filename = filename;
+ di->File.directory = directory;
+
+ map_llir_debug_info_set(&proc->module->debug_info, hash_pointer(file), di);
+ return di;
+}
+
+
+llirDebugInfo *llir_add_debug_info_proc(llirProcedure *proc, Entity *entity, String name, llirDebugInfo *file) {
+ if (!proc->module->generate_debug_info) {
+ return NULL;
+ }
+
+ GB_ASSERT(entity != NULL);
+ llirDebugInfo *di = llir_alloc_debug_info(proc->module->allocator, llirDebugInfo_Proc);
+ di->Proc.entity = entity;
+ di->Proc.name = name;
+ di->Proc.file = file;
+ di->Proc.pos = entity->token.pos;
+
+ map_llir_debug_info_set(&proc->module->debug_info, hash_pointer(entity), di);
+ return di;
+}
+
+////////////////////////////////////////////////////////////////
+//
+// @Emit
+//
+////////////////////////////////////////////////////////////////
+
+
+llirValue *llir_emit(llirProcedure *proc, llirValue *instr) {
+ GB_ASSERT(instr->kind == llirValue_Instr);
+ llirBlock *b = proc->curr_block;
+ instr->Instr.parent = b;
+ if (b != NULL) {
+ llirInstr *i = llir_get_last_instr(b);
+ if (!llir_is_instr_terminating(i)) {
+ array_add(&b->instrs, instr);
+ }
+ }
+ return instr;
+}
+llirValue *llir_emit_store(llirProcedure *p, llirValue *address, llirValue *value) {
+ return llir_emit(p, llir_make_instr_store(p, address, value));
+}
+llirValue *llir_emit_load(llirProcedure *p, llirValue *address) {
+ return llir_emit(p, llir_make_instr_load(p, address));
+}
+llirValue *llir_emit_select(llirProcedure *p, llirValue *cond, llirValue *t, llirValue *f) {
+ return llir_emit(p, llir_make_instr_select(p, cond, t, f));
+}
+
+llirValue *llir_emit_zero_init(llirProcedure *p, llirValue *address) {
+ return llir_emit(p, llir_make_instr_zero_init(p, address));
+}
+
+llirValue *llir_emit_comment(llirProcedure *p, String text) {
+ return llir_emit(p, llir_make_instr_comment(p, text));
+}
+
+
+llirValue *llir_emit_call(llirProcedure *p, llirValue *value, llirValue **args, isize arg_count) {
+ Type *pt = base_type(llir_type(value));
+ GB_ASSERT(pt->kind == Type_Proc);
+ Type *results = pt->Proc.results;
+ return llir_emit(p, llir_make_instr_call(p, value, args, arg_count, results));
+}
+
+llirValue *llir_emit_global_call(llirProcedure *proc, char *name_, llirValue **args, isize arg_count) {
+ String name = make_string_c(name_);
+ llirValue **found = map_llir_value_get(&proc->module->members, hash_string(name));
+ GB_ASSERT_MSG(found != NULL, "%.*s", LIT(name));
+ llirValue *gp = *found;
+ return llir_emit_call(proc, gp, args, arg_count);
+}
+
+
+
+void llir_emit_defer_stmts(llirProcedure *proc, llirDeferExitKind kind, llirBlock *block) {
+ isize count = proc->defer_stmts.count;
+ isize i = count;
+ while (i --> 0) {
+ llirDefer d = proc->defer_stmts.e[i];
+ if (kind == llirDeferExit_Default) {
+ if (proc->scope_index == d.scope_index &&
+ d.scope_index > 1) {
+ llir_build_defer_stmt(proc, d);
+ array_pop(&proc->defer_stmts);
+ continue;
+ } else {
+ break;
+ }
+ } else if (kind == llirDeferExit_Return) {
+ llir_build_defer_stmt(proc, d);
+ } else if (kind == llirDeferExit_Branch) {
+ GB_ASSERT(block != NULL);
+ isize lower_limit = block->scope_index+1;
+ if (lower_limit < d.scope_index) {
+ llir_build_defer_stmt(proc, d);
+ }
+ }
+ }
+}
+
+
+void llir_open_scope(llirProcedure *proc) {
+ proc->scope_index++;
+}
+
+void llir_close_scope(llirProcedure *proc, llirDeferExitKind kind, llirBlock *block) {
+ llir_emit_defer_stmts(proc, kind, block);
+ GB_ASSERT(proc->scope_index > 0);
+ proc->scope_index--;
+}
+
+
+
+void llir_emit_unreachable(llirProcedure *proc) {
+ llir_emit(proc, llir_make_instr_unreachable(proc));
+}
+
+void llir_emit_return(llirProcedure *proc, llirValue *v) {
+ llir_emit_defer_stmts(proc, llirDeferExit_Return, NULL);
+ llir_emit(proc, llir_make_instr_return(proc, v));
+}
+
+void llir_emit_jump(llirProcedure *proc, llirBlock *target_block) {
+ llirBlock *b = proc->curr_block;
+ if (b == NULL) {
+ return;
+ }
+ llir_emit(proc, llir_make_instr_jump(proc, target_block));
+ llir_add_edge(b, target_block);
+ proc->curr_block = NULL;
+}
+
+void llir_emit_if(llirProcedure *proc, llirValue *cond, llirBlock *true_block, llirBlock *false_block) {
+ llirBlock *b = proc->curr_block;
+ if (b == NULL) {
+ return;
+ }
+ llir_emit(proc, llir_make_instr_if(proc, cond, true_block, false_block));
+ llir_add_edge(b, true_block);
+ llir_add_edge(b, false_block);
+ proc->curr_block = NULL;
+}
+
+void llir_emit_startup_runtime(llirProcedure *proc) {
+ GB_ASSERT(proc->parent == NULL && str_eq(proc->name, str_lit("main")));
+ llir_emit(proc, llir_alloc_instr(proc, llirInstr_StartupRuntime));
+}
+
+
+
+
+llirValue *llir_addr_store(llirProcedure *proc, llirAddr addr, llirValue *value) {
+ if (addr.addr == NULL) {
+ return NULL;
+ }
+
+ if (addr.kind == llirAddr_Vector) {
+ llirValue *v = llir_emit_load(proc, addr.addr);
+ Type *elem_type = base_type(llir_type(v))->Vector.elem;
+ llirValue *elem = llir_emit_conv(proc, value, elem_type);
+ llirValue *out = llir_emit(proc, llir_make_instr_insert_element(proc, v, elem, addr.Vector.index));
+ return llir_emit_store(proc, addr.addr, out);
+ } else {
+ llirValue *v = llir_emit_conv(proc, value, llir_addr_type(addr));
+ return llir_emit_store(proc, addr.addr, v);
+ }
+}
+llirValue *llir_addr_load(llirProcedure *proc, llirAddr addr) {
+ if (addr.addr == NULL) {
+ GB_PANIC("Illegal addr load");
+ return NULL;
+ }
+
+ if (addr.kind == llirAddr_Vector) {
+ llirValue *v = llir_emit_load(proc, addr.addr);
+ return llir_emit(proc, llir_make_instr_extract_element(proc, v, addr.Vector.index));
+ }
+ Type *t = base_type(llir_type(addr.addr));
+ if (t->kind == Type_Proc) {
+ // NOTE(bill): Imported procedures don't require a load as they are pointers
+ return addr.addr;
+ }
+ return llir_emit_load(proc, addr.addr);
+}
+
+
+
+
+llirValue *llir_emit_ptr_offset(llirProcedure *proc, llirValue *ptr, llirValue *offset) {
+ offset = llir_emit_conv(proc, offset, t_int);
+ return llir_emit(proc, llir_make_instr_ptr_offset(proc, ptr, offset));
+}
+
+llirValue *llir_emit_arith(llirProcedure *proc, TokenKind op, llirValue *left, llirValue *right, Type *type) {
+ Type *t_left = llir_type(left);
+ Type *t_right = llir_type(right);
+
+ if (op == Token_Add) {
+ if (is_type_pointer(t_left)) {
+ llirValue *ptr = llir_emit_conv(proc, left, type);
+ llirValue *offset = right;
+ return llir_emit_ptr_offset(proc, ptr, offset);
+ } else if (is_type_pointer(llir_type(right))) {
+ llirValue *ptr = llir_emit_conv(proc, right, type);
+ llirValue *offset = left;
+ return llir_emit_ptr_offset(proc, ptr, offset);
+ }
+ } else if (op == Token_Sub) {
+ if (is_type_pointer(t_left) && is_type_integer(t_right)) {
+ // ptr - int
+ llirValue *ptr = llir_emit_conv(proc, left, type);
+ llirValue *offset = right;
+ return llir_emit_ptr_offset(proc, ptr, offset);
+ } else if (is_type_pointer(t_left) && is_type_pointer(t_right)) {
+ GB_ASSERT(is_type_integer(type));
+ Type *ptr_type = t_left;
+ llirModule *m = proc->module;
+ llirValue *x = llir_emit_conv(proc, left, type);
+ llirValue *y = llir_emit_conv(proc, right, type);
+ llirValue *diff = llir_emit_arith(proc, op, x, y, type);
+ llirValue *elem_size = llir_make_const_int(m->allocator, type_size_of(m->sizes, m->allocator, ptr_type));
+ return llir_emit_arith(proc, Token_Quo, diff, elem_size, type);
+ }
+ }
+
+
+ switch (op) {
+ case Token_AndNot: {
+ // NOTE(bill): x &~ y == x & (~y) == x & (y ~ -1)
+ // NOTE(bill): "not" `x` == `x` "xor" `-1`
+ llirValue *neg = llir_add_module_constant(proc->module, type, make_exact_value_integer(-1));
+ op = Token_Xor;
+ right = llir_emit_arith(proc, op, right, neg, type);
+ GB_ASSERT(right->Instr.kind == llirInstr_BinaryOp);
+ right->Instr.BinaryOp.type = type;
+ op = Token_And;
+ } /* fallthrough */
+ case Token_Add:
+ case Token_Sub:
+ case Token_Mul:
+ case Token_Quo:
+ case Token_Mod:
+ case Token_And:
+ case Token_Or:
+ case Token_Xor:
+ case Token_Shl:
+ case Token_Shr:
+ left = llir_emit_conv(proc, left, type);
+ right = llir_emit_conv(proc, right, type);
+ break;
+ }
+
+ return llir_emit(proc, llir_make_instr_binary_op(proc, op, left, right, type));
+}
+
+llirValue *llir_emit_comp(llirProcedure *proc, TokenKind op_kind, llirValue *left, llirValue *right) {
+ Type *a = base_type(llir_type(left));
+ Type *b = base_type(llir_type(right));
+
+ GB_ASSERT(gb_is_between(op_kind, Token__ComparisonBegin+1, Token__ComparisonEnd-1));
+
+ if (are_types_identical(a, b)) {
+ // NOTE(bill): No need for a conversion
+ } else if (left->kind == llirValue_Constant || left->kind == llirValue_Nil) {
+ left = llir_emit_conv(proc, left, llir_type(right));
+ } else if (right->kind == llirValue_Constant || right->kind == llirValue_Nil) {
+ right = llir_emit_conv(proc, right, llir_type(left));
+ }
+
+ Type *result = t_bool;
+ if (is_type_vector(a)) {
+ result = make_type_vector(proc->module->allocator, t_bool, a->Vector.count);
+ }
+ return llir_emit(proc, llir_make_instr_binary_op(proc, op_kind, left, right, result));
+}
+
+llirValue *llir_emit_array_ep(llirProcedure *proc, llirValue *s, llirValue *index) {
+ GB_ASSERT(index != NULL);
+ Type *st = base_type(type_deref(llir_type(s)));
+ GB_ASSERT(is_type_array(st) || is_type_vector(st));
+
+ // NOTE(bill): For some weird legacy reason in LLVM, structure elements must be accessed as an i32
+ index = llir_emit_conv(proc, index, t_i32);
+ return llir_emit(proc, llir_make_instr_array_element_ptr(proc, s, index));
+}
+
+llirValue *llir_emit_array_epi(llirProcedure *proc, llirValue *s, i32 index) {
+ return llir_emit_array_ep(proc, s, llir_make_const_i32(proc->module->allocator, index));
+}
+
+llirValue *llir_emit_union_tag_ptr(llirProcedure *proc, llirValue *u) {
+ Type *t = llir_type(u);
+ GB_ASSERT(is_type_pointer(t) &&
+ is_type_union(type_deref(t)));
+ GB_ASSERT(are_types_identical(t, llir_type(u)));
+ return llir_emit(proc, llir_make_instr_union_tag_ptr(proc, u));
+}
+
+llirValue *llir_emit_union_tag_value(llirProcedure *proc, llirValue *u) {
+ Type *t = llir_type(u);
+ GB_ASSERT(is_type_union(t));
+ GB_ASSERT(are_types_identical(t, llir_type(u)));
+ return llir_emit(proc, llir_make_instr_union_tag_value(proc, u));
+}
+
+
+
+llirValue *llir_emit_struct_ep(llirProcedure *proc, llirValue *s, i32 index) {
+ gbAllocator a = proc->module->allocator;
+ Type *t = base_type(type_deref(llir_type(s)));
+ Type *result_type = NULL;
+ llirValue *gep = NULL;
+
+ if (is_type_struct(t)) {
+ GB_ASSERT(t->Record.field_count > 0);
+ GB_ASSERT(gb_is_between(index, 0, t->Record.field_count-1));
+ result_type = make_type_pointer(a, t->Record.fields[index]->type);
+ } else if (is_type_tuple(t)) {
+ GB_ASSERT(t->Tuple.variable_count > 0);
+ GB_ASSERT(gb_is_between(index, 0, t->Tuple.variable_count-1));
+ result_type = make_type_pointer(a, t->Tuple.variables[index]->type);
+ } else if (is_type_slice(t)) {
+ switch (index) {
+ case 0: result_type = make_type_pointer(a, make_type_pointer(a, t->Slice.elem)); break;
+ case 1: result_type = make_type_pointer(a, t_int); break;
+ case 2: result_type = make_type_pointer(a, t_int); break;
+ }
+ } else if (is_type_string(t)) {
+ switch (index) {
+ case 0: result_type = make_type_pointer(a, t_u8_ptr); break;
+ case 1: result_type = make_type_pointer(a, t_int); break;
+ }
+ } else if (is_type_any(t)) {
+ switch (index) {
+ case 0: result_type = make_type_pointer(a, t_type_info_ptr); break;
+ case 1: result_type = make_type_pointer(a, t_rawptr); break;
+ }
+ } else if (is_type_maybe(t)) {
+ switch (index) {
+ case 0: result_type = make_type_pointer(a, t->Maybe.elem); break;
+ case 1: result_type = make_type_pointer(a, t_bool); break;
+ }
+ } else {
+ GB_PANIC("TODO(bill): struct_gep type: %s, %d", type_to_string(llir_type(s)), index);
+ }
+
+ GB_ASSERT(result_type != NULL);
+
+ gep = llir_make_instr_struct_element_ptr(proc, s, index, result_type);
+ return llir_emit(proc, gep);
+}
+
+
+
+llirValue *llir_emit_array_ev(llirProcedure *proc, llirValue *s, i32 index) {
+ Type *st = base_type(llir_type(s));
+ GB_ASSERT(is_type_array(st));
+ return llir_emit(proc, llir_make_instr_array_extract_value(proc, s, index));
+}
+
+llirValue *llir_emit_struct_ev(llirProcedure *proc, llirValue *s, i32 index) {
+ // NOTE(bill): For some weird legacy reason in LLVM, structure elements must be accessed as an i32
+
+ gbAllocator a = proc->module->allocator;
+ Type *t = base_type(llir_type(s));
+ Type *result_type = NULL;
+
+ if (is_type_struct(t)) {
+ GB_ASSERT(t->Record.field_count > 0);
+ GB_ASSERT(gb_is_between(index, 0, t->Record.field_count-1));
+ result_type = t->Record.fields[index]->type;
+ } else if (is_type_tuple(t)) {
+ GB_ASSERT(t->Tuple.variable_count > 0);
+ GB_ASSERT(gb_is_between(index, 0, t->Tuple.variable_count-1));
+ result_type = t->Tuple.variables[index]->type;
+ } else if (is_type_slice(t)) {
+ switch (index) {
+ case 0: result_type = make_type_pointer(a, t->Slice.elem); break;
+ case 1: result_type = t_int; break;
+ case 2: result_type = t_int; break;
+ }
+ } else if (is_type_string(t)) {
+ switch (index) {
+ case 0: result_type = t_u8_ptr; break;
+ case 1: result_type = t_int; break;
+ }
+ } else if (is_type_any(t)) {
+ switch (index) {
+ case 0: result_type = t_type_info_ptr; break;
+ case 1: result_type = t_rawptr; break;
+ }
+ } else if (is_type_maybe(t)) {
+ switch (index) {
+ case 0: result_type = t->Maybe.elem; break;
+ case 1: result_type = t_bool; break;
+ }
+ } else {
+ GB_PANIC("TODO(bill): struct_ev type: %s, %d", type_to_string(llir_type(s)), index);
+ }
+
+ GB_ASSERT(result_type != NULL);
+
+ return llir_emit(proc, llir_make_instr_struct_extract_value(proc, s, index, result_type));
+}
+
+
+llirValue *llir_emit_deep_field_gep(llirProcedure *proc, Type *type, llirValue *e, Selection sel) {
+ GB_ASSERT(sel.index.count > 0);
+
+ for_array(i, sel.index) {
+ i32 index = cast(i32)sel.index.e[i];
+ if (is_type_pointer(type)) {
+ type = type_deref(type);
+ e = llir_emit_load(proc, e);
+ e = llir_emit_ptr_offset(proc, e, v_zero); // TODO(bill): Do I need these copies?
+ }
+ type = base_type(type);
+
+
+ if (is_type_raw_union(type)) {
+ type = type->Record.fields[index]->type;
+ e = llir_emit_conv(proc, e, make_type_pointer(proc->module->allocator, type));
+ } else if (type->kind == Type_Record) {
+ type = type->Record.fields[index]->type;
+ e = llir_emit_struct_ep(proc, e, index);
+ } else if (type->kind == Type_Basic) {
+ switch (type->Basic.kind) {
+ case Basic_any: {
+ if (index == 0) {
+ type = t_type_info_ptr;
+ } else if (index == 1) {
+ type = t_rawptr;
+ }
+ e = llir_emit_struct_ep(proc, e, index);
+ } break;
+
+ case Basic_string:
+ e = llir_emit_struct_ep(proc, e, index);
+ break;
+
+ default:
+ GB_PANIC("un-gep-able type");
+ break;
+ }
+ } else if (type->kind == Type_Slice) {
+ e = llir_emit_struct_ep(proc, e, index);
+ } else if (type->kind == Type_Vector) {
+ e = llir_emit_array_epi(proc, e, index);
+ } else if (type->kind == Type_Array) {
+ e = llir_emit_array_epi(proc, e, index);
+ } else {
+ GB_PANIC("un-gep-able type");
+ }
+ }
+
+ return e;
+}
+
+
+llirValue *llir_emit_deep_field_ev(llirProcedure *proc, Type *type, llirValue *e, Selection sel) {
+ GB_ASSERT(sel.index.count > 0);
+
+ for_array(i, sel.index) {
+ i32 index = cast(i32)sel.index.e[i];
+ if (is_type_pointer(type)) {
+ type = type_deref(type);
+ e = llir_emit_load(proc, e);
+ e = llir_emit_ptr_offset(proc, e, v_zero); // TODO(bill): Do I need these copies?
+ }
+ type = base_type(type);
+
+
+ if (is_type_raw_union(type)) {
+ GB_PANIC("TODO(bill): IS THIS EVEN CORRECT?");
+ type = type->Record.fields[index]->type;
+ e = llir_emit_conv(proc, e, type);
+ } else {
+ e = llir_emit_struct_ev(proc, e, index);
+ }
+ }
+
+ return e;
+}
+
+
+
+
+llirValue *llir_array_elem(llirProcedure *proc, llirValue *array) {
+ return llir_emit_array_ep(proc, array, v_zero32);
+}
+llirValue *llir_array_len(llirProcedure *proc, llirValue *array) {
+ Type *t = llir_type(array);
+ GB_ASSERT(t->kind == Type_Array);
+ return llir_make_const_int(proc->module->allocator, t->Array.count);
+}
+llirValue *llir_array_cap(llirProcedure *proc, llirValue *array) {
+ return llir_array_len(proc, array);
+}
+
+llirValue *llir_slice_elem(llirProcedure *proc, llirValue *slice) {
+ Type *t = llir_type(slice);
+ GB_ASSERT(t->kind == Type_Slice);
+ return llir_emit_struct_ev(proc, slice, 0);
+}
+llirValue *llir_slice_len(llirProcedure *proc, llirValue *slice) {
+ Type *t = llir_type(slice);
+ GB_ASSERT(t->kind == Type_Slice);
+ return llir_emit_struct_ev(proc, slice, 1);
+}
+
+llirValue *llir_string_elem(llirProcedure *proc, llirValue *string) {
+ Type *t = llir_type(string);
+ GB_ASSERT(t->kind == Type_Basic && t->Basic.kind == Basic_string);
+ return llir_emit_struct_ev(proc, string, 0);
+}
+llirValue *llir_string_len(llirProcedure *proc, llirValue *string) {
+ Type *t = llir_type(string);
+ GB_ASSERT_MSG(t->kind == Type_Basic && t->Basic.kind == Basic_string, "%s", type_to_string(t));
+ return llir_emit_struct_ev(proc, string, 1);
+}
+
+
+
+llirValue *llir_add_local_slice(llirProcedure *proc, Type *slice_type, llirValue *base, llirValue *low, llirValue *high) {
+ // TODO(bill): array bounds checking for slice creation
+ // TODO(bill): check that low < high <= max
+ gbAllocator a = proc->module->allocator;
+ Type *bt = base_type(llir_type(base));
+
+ if (low == NULL) {
+ low = v_zero;
+ }
+ if (high == NULL) {
+ switch (bt->kind) {
+ case Type_Array: high = llir_array_len(proc, base); break;
+ case Type_Slice: high = llir_slice_len(proc, base); break;
+ case Type_Pointer: high = v_one; break;
+ }
+ }
+
+ llirValue *len = llir_emit_arith(proc, Token_Sub, high, low, t_int);
+
+ llirValue *elem = NULL;
+ switch (bt->kind) {
+ case Type_Array: elem = llir_array_elem(proc, base); break;
+ case Type_Slice: elem = llir_slice_elem(proc, base); break;
+ case Type_Pointer: elem = llir_emit_load(proc, base); break;
+ }
+
+ elem = llir_emit_ptr_offset(proc, elem, low);
+
+ llirValue *slice = llir_add_local_generated(proc, slice_type);
+
+ llirValue *gep = NULL;
+ gep = llir_emit_struct_ep(proc, slice, 0);
+ llir_emit_store(proc, gep, elem);
+
+ gep = llir_emit_struct_ep(proc, slice, 1);
+ llir_emit_store(proc, gep, len);
+
+ return slice;
+}
+
+llirValue *llir_emit_string(llirProcedure *proc, llirValue *elem, llirValue *len) {
+ llirValue *str = llir_add_local_generated(proc, t_string);
+ llirValue *str_elem = llir_emit_struct_ep(proc, str, 0);
+ llirValue *str_len = llir_emit_struct_ep(proc, str, 1);
+ llir_emit_store(proc, str_elem, elem);
+ llir_emit_store(proc, str_len, len);
+ return llir_emit_load(proc, str);
+}
+
+
+
+
+String lookup_polymorphic_field(CheckerInfo *info, Type *dst, Type *src) {
+ Type *prev_src = src;
+ // Type *prev_dst = dst;
+ src = base_type(type_deref(src));
+ // dst = base_type(type_deref(dst));
+ bool src_is_ptr = src != prev_src;
+ // bool dst_is_ptr = dst != prev_dst;
+
+ GB_ASSERT(is_type_struct(src));
+ for (isize i = 0; i < src->Record.field_count; i++) {
+ Entity *f = src->Record.fields[i];
+ if (f->kind == Entity_Variable && f->flags & EntityFlag_Anonymous) {
+ if (are_types_identical(dst, f->type)) {
+ return f->token.string;
+ }
+ if (src_is_ptr && is_type_pointer(dst)) {
+ if (are_types_identical(type_deref(dst), f->type)) {
+ return f->token.string;
+ }
+ }
+ if (is_type_struct(f->type)) {
+ String name = lookup_polymorphic_field(info, dst, f->type);
+ if (name.len > 0) {
+ return name;
+ }
+ }
+ }
+ }
+ return str_lit("");
+}
+
+llirValue *llir_emit_bitcast(llirProcedure *proc, llirValue *data, Type *type) {
+ return llir_emit(proc, llir_make_instr_conv(proc, llirConv_bitcast, data, llir_type(data), type));
+}
+
+
+llirValue *llir_emit_conv(llirProcedure *proc, llirValue *value, Type *t) {
+ Type *src_type = llir_type(value);
+ if (are_types_identical(t, src_type)) {
+ return value;
+ }
+
+ Type *src = base_type(base_enum_type(src_type));
+ Type *dst = base_type(base_enum_type(t));
+
+ if (value->kind == llirValue_Constant) {
+ if (is_type_any(dst)) {
+ llirValue *default_value = llir_add_local_generated(proc, default_type(src_type));
+ llir_emit_store(proc, default_value, value);
+ return llir_emit_conv(proc, llir_emit_load(proc, default_value), t_any);
+ } else if (dst->kind == Type_Basic) {
+ ExactValue ev = value->Constant.value;
+ if (is_type_float(dst)) {
+ ev = exact_value_to_float(ev);
+ } else if (is_type_string(dst)) {
+ // Handled elsewhere
+ GB_ASSERT(ev.kind == ExactValue_String);
+ } else if (is_type_integer(dst)) {
+ ev = exact_value_to_integer(ev);
+ } else if (is_type_pointer(dst)) {
+ // IMPORTANT NOTE(bill): LLVM doesn't support pointer constants expect `null`
+ llirValue *i = llir_add_module_constant(proc->module, t_uint, ev);
+ return llir_emit(proc, llir_make_instr_conv(proc, llirConv_inttoptr, i, t_uint, dst));
+ }
+ return llir_add_module_constant(proc->module, t, ev);
+ }
+ }
+
+ if (are_types_identical(src, dst)) {
+ return value;
+ }
+
+ if (is_type_maybe(dst)) {
+ llirValue *maybe = llir_add_local_generated(proc, dst);
+ llirValue *val = llir_emit_struct_ep(proc, maybe, 0);
+ llirValue *set = llir_emit_struct_ep(proc, maybe, 1);
+ llir_emit_store(proc, val, value);
+ llir_emit_store(proc, set, v_true);
+ return llir_emit_load(proc, maybe);
+ }
+
+ // integer -> integer
+ if (is_type_integer(src) && is_type_integer(dst)) {
+ GB_ASSERT(src->kind == Type_Basic &&
+ dst->kind == Type_Basic);
+ i64 sz = type_size_of(proc->module->sizes, proc->module->allocator, src);
+ i64 dz = type_size_of(proc->module->sizes, proc->module->allocator, dst);
+ if (sz == dz) {
+ // NOTE(bill): In LLVM, all integers are signed and rely upon 2's compliment
+ return value;
+ }
+
+ llirConvKind kind = llirConv_trunc;
+ if (dz >= sz) {
+ kind = llirConv_zext;
+ }
+ return llir_emit(proc, llir_make_instr_conv(proc, kind, value, src, dst));
+ }
+
+ // boolean -> integer
+ if (is_type_boolean(src) && is_type_integer(dst)) {
+ return llir_emit(proc, llir_make_instr_conv(proc, llirConv_zext, value, src, dst));
+ }
+
+ // integer -> boolean
+ if (is_type_integer(src) && is_type_boolean(dst)) {
+ return llir_emit_comp(proc, Token_NotEq, value, v_zero);
+ }
+
+
+ // float -> float
+ if (is_type_float(src) && is_type_float(dst)) {
+ i64 sz = type_size_of(proc->module->sizes, proc->module->allocator, src);
+ i64 dz = type_size_of(proc->module->sizes, proc->module->allocator, dst);
+ llirConvKind kind = llirConv_fptrunc;
+ if (dz >= sz) {
+ kind = llirConv_fpext;
+ }
+ return llir_emit(proc, llir_make_instr_conv(proc, kind, value, src, dst));
+ }
+
+ // float <-> integer
+ if (is_type_float(src) && is_type_integer(dst)) {
+ llirConvKind kind = llirConv_fptosi;
+ if (is_type_unsigned(dst)) {
+ kind = llirConv_fptoui;
+ }
+ return llir_emit(proc, llir_make_instr_conv(proc, kind, value, src, dst));
+ }
+ if (is_type_integer(src) && is_type_float(dst)) {
+ llirConvKind kind = llirConv_sitofp;
+ if (is_type_unsigned(src)) {
+ kind = llirConv_uitofp;
+ }
+ return llir_emit(proc, llir_make_instr_conv(proc, kind, value, src, dst));
+ }
+
+ // Pointer <-> int
+ if (is_type_pointer(src) && is_type_int_or_uint(dst)) {
+ return llir_emit(proc, llir_make_instr_conv(proc, llirConv_ptrtoint, value, src, dst));
+ }
+ if (is_type_int_or_uint(src) && is_type_pointer(dst)) {
+ return llir_emit(proc, llir_make_instr_conv(proc, llirConv_inttoptr, value, src, dst));
+ }
+
+ if (is_type_union(dst)) {
+ for (isize i = 0; i < dst->Record.field_count; i++) {
+ Entity *f = dst->Record.fields[i];
+ if (are_types_identical(f->type, src_type)) {
+ llir_emit_comment(proc, str_lit("union - child to parent"));
+ gbAllocator allocator = proc->module->allocator;
+ llirValue *parent = llir_add_local_generated(proc, t);
+ llirValue *tag = llir_make_const_int(allocator, i);
+ llir_emit_store(proc, llir_emit_union_tag_ptr(proc, parent), tag);
+
+ llirValue *data = llir_emit_conv(proc, parent, t_rawptr);
+
+ Type *tag_type = src_type;
+ Type *tag_type_ptr = make_type_pointer(allocator, tag_type);
+ llirValue *underlying = llir_emit_bitcast(proc, data, tag_type_ptr);
+ llir_emit_store(proc, underlying, value);
+
+ return llir_emit_load(proc, parent);
+ }
+ }
+ }
+
+ // NOTE(bill): This has to be done beofre `Pointer <-> Pointer` as it's
+ // subtype polymorphism casting
+ {
+ Type *sb = base_type(type_deref(src));
+ bool src_is_ptr = src != sb;
+ if (is_type_struct(sb)) {
+ String field_name = lookup_polymorphic_field(proc->module->info, t, src);
+ // gb_printf("field_name: %.*s\n", LIT(field_name));
+ if (field_name.len > 0) {
+ // NOTE(bill): It can be casted
+ Selection sel = lookup_field(proc->module->allocator, sb, field_name, false);
+ if (sel.entity != NULL) {
+ llir_emit_comment(proc, str_lit("cast - polymorphism"));
+ if (src_is_ptr) {
+ value = llir_emit_load(proc, value);
+ }
+ return llir_emit_deep_field_ev(proc, sb, value, sel);
+ }
+ }
+ }
+ }
+
+
+
+ // Pointer <-> Pointer
+ if (is_type_pointer(src) && is_type_pointer(dst)) {
+ return llir_emit_bitcast(proc, value, dst);
+ }
+
+
+
+ // proc <-> proc
+ if (is_type_proc(src) && is_type_proc(dst)) {
+ return llir_emit_bitcast(proc, value, dst);
+ }
+
+ // pointer -> proc
+ if (is_type_pointer(src) && is_type_proc(dst)) {
+ return llir_emit_bitcast(proc, value, dst);
+ }
+ // proc -> pointer
+ if (is_type_proc(src) && is_type_pointer(dst)) {
+ return llir_emit_bitcast(proc, value, dst);
+ }
+
+
+
+ // []byte/[]u8 <-> string
+ if (is_type_u8_slice(src) && is_type_string(dst)) {
+ llirValue *elem = llir_slice_elem(proc, value);
+ llirValue *len = llir_slice_len(proc, value);
+ return llir_emit_string(proc, elem, len);
+ }
+ if (is_type_string(src) && is_type_u8_slice(dst)) {
+ llirValue *elem = llir_string_elem(proc, value);
+ llirValue *elem_ptr = llir_add_local_generated(proc, llir_type(elem));
+ llir_emit_store(proc, elem_ptr, elem);
+
+ llirValue *len = llir_string_len(proc, value);
+ llirValue *slice = llir_add_local_slice(proc, dst, elem_ptr, v_zero, len);
+ return llir_emit_load(proc, slice);
+ }
+
+ if (is_type_vector(dst)) {
+ Type *dst_elem = dst->Vector.elem;
+ value = llir_emit_conv(proc, value, dst_elem);
+ llirValue *v = llir_add_local_generated(proc, t);
+ v = llir_emit_load(proc, v);
+ v = llir_emit(proc, llir_make_instr_insert_element(proc, v, value, v_zero32));
+ // NOTE(bill): Broadcast lowest value to all values
+ isize index_count = dst->Vector.count;
+ i32 *indices = gb_alloc_array(proc->module->allocator, i32, index_count);
+ for (isize i = 0; i < index_count; i++) {
+ indices[i] = 0;
+ }
+
+ v = llir_emit(proc, llir_make_instr_vector_shuffle(proc, v, indices, index_count));
+ return v;
+ }
+
+ if (is_type_any(dst)) {
+ llirValue *result = llir_add_local_generated(proc, t_any);
+
+ if (is_type_untyped_nil(src)) {
+ return llir_emit_load(proc, result);
+ }
+
+ llirValue *data = NULL;
+ if (value->kind == llirValue_Instr &&
+ value->Instr.kind == llirInstr_Load) {
+ // NOTE(bill): Addrellirble value
+ data = value->Instr.Load.address;
+ } else {
+ // NOTE(bill): Non-addrellirble value
+ data = llir_add_local_generated(proc, src_type);
+ llir_emit_store(proc, data, value);
+ }
+ GB_ASSERT(is_type_pointer(llir_type(data)));
+ GB_ASSERT(is_type_typed(src_type));
+ data = llir_emit_conv(proc, data, t_rawptr);
+
+
+ llirValue *ti = llir_type_info(proc, src_type);
+
+ llirValue *gep0 = llir_emit_struct_ep(proc, result, 0);
+ llirValue *gep1 = llir_emit_struct_ep(proc, result, 1);
+ llir_emit_store(proc, gep0, ti);
+ llir_emit_store(proc, gep1, data);
+
+ return llir_emit_load(proc, result);
+ }
+
+ if (is_type_untyped_nil(src) && type_has_nil(dst)) {
+ return llir_make_value_nil(proc->module->allocator, t);
+ }
+
+
+ gb_printf_err("llir_emit_conv: src -> dst\n");
+ gb_printf_err("Not Identical %s != %s\n", type_to_string(src_type), type_to_string(t));
+ gb_printf_err("Not Identical %s != %s\n", type_to_string(src), type_to_string(dst));
+
+
+ GB_PANIC("Invalid type conversion: `%s` to `%s`", type_to_string(src_type), type_to_string(t));
+
+ return NULL;
+}
+
+bool llir_is_type_aggregate(Type *t) {
+ t = base_type(t);
+ switch (t->kind) {
+ case Type_Basic:
+ switch (t->Basic.kind) {
+ case Basic_string:
+ case Basic_any:
+ return true;
+ }
+ break;
+
+ case Type_Pointer:
+ case Type_Vector:
+ return false;
+
+ case Type_Array:
+ case Type_Slice:
+ case Type_Maybe:
+ case Type_Record:
+ case Type_Tuple:
+ return true;
+
+ case Type_Named:
+ return llir_is_type_aggregate(t->Named.base);
+ }
+
+ return false;
+}
+
+llirValue *llir_emit_transmute(llirProcedure *proc, llirValue *value, Type *t) {
+ Type *src_type = llir_type(value);
+ if (are_types_identical(t, src_type)) {
+ return value;
+ }
+
+ Type *src = base_type(src_type);
+ Type *dst = base_type(t);
+ if (are_types_identical(t, src_type)) {
+ return value;
+ }
+
+ llirModule *m = proc->module;
+
+ i64 sz = type_size_of(m->sizes, m->allocator, src);
+ i64 dz = type_size_of(m->sizes, m->allocator, dst);
+
+ GB_ASSERT_MSG(sz == dz, "Invalid transmute conversion: `%s` to `%s`", type_to_string(src_type), type_to_string(t));
+
+ if (llir_is_type_aggregate(src) || llir_is_type_aggregate(dst)) {
+ llirValue *s = llir_add_local_generated(proc, src);
+ llir_emit_store(proc, s, value);
+
+ llirValue *d = llir_emit_bitcast(proc, s, make_type_pointer(m->allocator, dst));
+ return llir_emit_load(proc, d);
+ }
+
+ // TODO(bill): Actually figure out what the conversion needs to be correctly 'cause LLVM
+
+ return llir_emit_bitcast(proc, value, dst);
+}
+
+llirValue *llir_emit_down_cast(llirProcedure *proc, llirValue *value, Type *t) {
+ GB_ASSERT(is_type_pointer(llir_type(value)));
+ gbAllocator allocator = proc->module->allocator;
+
+ String field_name = check_down_cast_name(t, type_deref(llir_type(value)));
+ GB_ASSERT(field_name.len > 0);
+ Selection sel = lookup_field(proc->module->allocator, t, field_name, false);
+ llirValue *bytes = llir_emit_conv(proc, value, t_u8_ptr);
+
+ i64 offset_ = type_offset_of_from_selection(proc->module->sizes, allocator, type_deref(t), sel);
+ llirValue *offset = llir_make_const_int(allocator, -offset_);
+ llirValue *head = llir_emit_ptr_offset(proc, bytes, offset);
+ return llir_emit_conv(proc, head, t);
+}
+
+llirValue *llir_emit_union_cast(llirProcedure *proc, llirValue *value, Type *tuple) {
+ GB_ASSERT(tuple->kind == Type_Tuple);
+ gbAllocator a = proc->module->allocator;
+
+ Type *src_type = llir_type(value);
+ bool is_ptr = is_type_pointer(src_type);
+
+ llirValue *v = llir_add_local_generated(proc, tuple);
+
+ if (is_ptr) {
+ Type *src = base_type(type_deref(src_type));
+ Type *src_ptr = src_type;
+ GB_ASSERT(is_type_union(src));
+ Type *dst_ptr = tuple->Tuple.variables[0]->type;
+ Type *dst = type_deref(dst_ptr);
+
+ llirValue *tag = llir_emit_load(proc, llir_emit_union_tag_ptr(proc, value));
+ llirValue *dst_tag = NULL;
+ for (isize i = 1; i < src->Record.field_count; i++) {
+ Entity *f = src->Record.fields[i];
+ if (are_types_identical(f->type, dst)) {
+ dst_tag = llir_make_const_int(a, i);
+ break;
+ }
+ }
+ GB_ASSERT(dst_tag != NULL);
+
+ llirBlock *ok_block = llir_add_block(proc, NULL, "union_cast.ok");
+ llirBlock *end_block = llir_add_block(proc, NULL, "union_cast.end");
+ llirValue *cond = llir_emit_comp(proc, Token_CmpEq, tag, dst_tag);
+ llir_emit_if(proc, cond, ok_block, end_block);
+ proc->curr_block = ok_block;
+
+ llirValue *gep0 = llir_emit_struct_ep(proc, v, 0);
+ llirValue *gep1 = llir_emit_struct_ep(proc, v, 1);
+
+ llirValue *data = llir_emit_conv(proc, value, dst_ptr);
+ llir_emit_store(proc, gep0, data);
+ llir_emit_store(proc, gep1, v_true);
+
+ llir_emit_jump(proc, end_block);
+ proc->curr_block = end_block;
+
+ } else {
+ Type *src = base_type(src_type);
+ GB_ASSERT(is_type_union(src));
+ Type *dst = tuple->Tuple.variables[0]->type;
+ Type *dst_ptr = make_type_pointer(a, dst);
+
+ llirValue *tag = llir_emit_union_tag_value(proc, value);
+ llirValue *dst_tag = NULL;
+ for (isize i = 1; i < src->Record.field_count; i++) {
+ Entity *f = src->Record.fields[i];
+ if (are_types_identical(f->type, dst)) {
+ dst_tag = llir_make_const_int(a, i);
+ break;
+ }
+ }
+ GB_ASSERT(dst_tag != NULL);
+
+ // HACK(bill): This is probably not very efficient
+ llirValue *union_copy = llir_add_local_generated(proc, src_type);
+ llir_emit_store(proc, union_copy, value);
+
+ llirBlock *ok_block = llir_add_block(proc, NULL, "union_cast.ok");
+ llirBlock *end_block = llir_add_block(proc, NULL, "union_cast.end");
+ llirValue *cond = llir_emit_comp(proc, Token_CmpEq, tag, dst_tag);
+ llir_emit_if(proc, cond, ok_block, end_block);
+ proc->curr_block = ok_block;
+
+ llirValue *gep0 = llir_emit_struct_ep(proc, v, 0);
+ llirValue *gep1 = llir_emit_struct_ep(proc, v, 1);
+
+ llirValue *data = llir_emit_load(proc, llir_emit_conv(proc, union_copy, dst_ptr));
+ llir_emit_store(proc, gep0, data);
+ llir_emit_store(proc, gep1, v_true);
+
+ llir_emit_jump(proc, end_block);
+ proc->curr_block = end_block;
+
+ }
+ return llir_emit_load(proc, v);
+}
+
+
+isize llir_type_info_index(CheckerInfo *info, Type *type) {
+ type = default_type(type);
+
+ isize entry_index = -1;
+ HashKey key = hash_pointer(type);
+ isize *found_entry_index = map_isize_get(&info->type_info_map, key);
+ if (found_entry_index) {
+ entry_index = *found_entry_index;
+ }
+ if (entry_index < 0) {
+ // NOTE(bill): Do manual search
+ // TODO(bill): This is O(n) and can be very slow
+ for_array(i, info->type_info_map.entries){
+ MapIsizeEntry *e = &info->type_info_map.entries.e[i];
+ Type *prev_type = cast(Type *)e->key.ptr;
+ if (are_types_identical(prev_type, type)) {
+ entry_index = e->value;
+ // NOTE(bill): Add it to the search map
+ map_isize_set(&info->type_info_map, key, entry_index);
+ break;
+ }
+ }
+ }
+
+ if (entry_index < 0) {
+ compiler_error("Type_Info for `%s` could not be found", type_to_string(type));
+ }
+ return entry_index;
+}
+
+llirValue *llir_type_info(llirProcedure *proc, Type *type) {
+ llirValue **found = map_llir_value_get(&proc->module->members, hash_string(str_lit(LLIR_TYPE_INFO_DATA_NAME)));
+ GB_ASSERT(found != NULL);
+ llirValue *type_info_data = *found;
+ CheckerInfo *info = proc->module->info;
+
+ type = default_type(type);
+
+ i32 entry_index = llir_type_info_index(info, type);
+
+ // gb_printf_err("%d %s\n", entry_index, type_to_string(type));
+
+ return llir_emit_array_ep(proc, type_info_data, llir_make_const_i32(proc->module->allocator, entry_index));
+}
+
+
+
+llirValue *llir_emit_logical_binary_expr(llirProcedure *proc, AstNode *expr) {
+ ast_node(be, BinaryExpr, expr);
+#if 0
+ llirBlock *true_ = llir_add_block(proc, NULL, "logical.cmp.true");
+ llirBlock *false_ = llir_add_block(proc, NULL, "logical.cmp.false");
+ llirBlock *done = llir_add_block(proc, NULL, "logical.cmp.done");
+
+ llirValue *result = llir_add_local_generated(proc, t_bool);
+ llir_build_cond(proc, expr, true_, false_);
+
+ proc->curr_block = true_;
+ llir_emit_store(proc, result, v_true);
+ llir_emit_jump(proc, done);
+
+ proc->curr_block = false_;
+ llir_emit_store(proc, result, v_false);
+ llir_emit_jump(proc, done);
+
+ proc->curr_block = done;
+
+ return llir_emit_load(proc, result);
+#else
+ llirBlock *rhs = llir_add_block(proc, NULL, "logical.cmp.rhs");
+ llirBlock *done = llir_add_block(proc, NULL, "logical.cmp.done");
+
+ Type *type = type_of_expr(proc->module->info, expr);
+ type = default_type(type);
+
+ llirValue *short_circuit = NULL;
+ if (be->op.kind == Token_CmpAnd) {
+ llir_build_cond(proc, be->left, rhs, done);
+ short_circuit = v_false;
+ } else if (be->op.kind == Token_CmpOr) {
+ llir_build_cond(proc, be->left, done, rhs);
+ short_circuit = v_true;
+ }
+
+ if (rhs->preds.count == 0) {
+ proc->curr_block = done;
+ return short_circuit;
+ }
+
+ if (done->preds.count == 0) {
+ proc->curr_block = rhs;
+ return llir_build_expr(proc, be->right);
+ }
+
+ llirValueArray edges = {0};
+ array_init_reserve(&edges, proc->module->allocator, done->preds.count+1);
+ for_array(i, done->preds) {
+ array_add(&edges, short_circuit);
+ }
+
+ proc->curr_block = rhs;
+ array_add(&edges, llir_build_expr(proc, be->right));
+ llir_emit_jump(proc, done);
+ proc->curr_block = done;
+
+ return llir_emit(proc, llir_make_instr_phi(proc, edges, type));
+#endif
+}
+
+
+void llir_emit_bounds_check(llirProcedure *proc, Token token, llirValue *index, llirValue *len) {
+ if ((proc->module->stmt_state_flags & StmtStateFlag_no_bounds_check) != 0) {
+ return;
+ }
+
+ index = llir_emit_conv(proc, index, t_int);
+ len = llir_emit_conv(proc, len, t_int);
+
+ llir_emit(proc, llir_make_instr_bounds_check(proc, token.pos, index, len));
+
+ // gbAllocator a = proc->module->allocator;
+ // llirValue **args = gb_alloc_array(a, llirValue *, 5);
+ // args[0] = llir_emit_global_string(proc, token.pos.file);
+ // args[1] = llir_make_const_int(a, token.pos.line);
+ // args[2] = llir_make_const_int(a, token.pos.column);
+ // args[3] = llir_emit_conv(proc, index, t_int);
+ // args[4] = llir_emit_conv(proc, len, t_int);
+
+ // llir_emit_global_call(proc, "__bounds_check_error", args, 5);
+}
+
+void llir_emit_slice_bounds_check(llirProcedure *proc, Token token, llirValue *low, llirValue *high, bool is_substring) {
+ if ((proc->module->stmt_state_flags & StmtStateFlag_no_bounds_check) != 0) {
+ return;
+ }
+
+ low = llir_emit_conv(proc, low, t_int);
+ high = llir_emit_conv(proc, high, t_int);
+
+ llir_emit(proc, llir_make_instr_slice_bounds_check(proc, token.pos, low, high, is_substring));
+}
+
+
+////////////////////////////////////////////////////////////////
+//
+// @Build
+//
+////////////////////////////////////////////////////////////////
+
+
+void llir_push_target_list(llirProcedure *proc, llirBlock *break_, llirBlock *continue_, llirBlock *fallthrough_) {
+ llirTargetList *tl = gb_alloc_item(proc->module->allocator, llirTargetList);
+ tl->prev = proc->target_list;
+ tl->break_ = break_;
+ tl->continue_ = continue_;
+ tl->fallthrough_ = fallthrough_;
+ proc->target_list = tl;
+}
+
+void llir_pop_target_list(llirProcedure *proc) {
+ proc->target_list = proc->target_list->prev;
+}
+
+
+void llir_mangle_sub_type_name(llirModule *m, Entity *field, String parent) {
+ if (field->kind != Entity_TypeName) {
+ return;
+ }
+ String cn = field->token.string;
+
+ isize len = parent.len + 1 + cn.len;
+ String child = {NULL, len};
+ child.text = gb_alloc_array(m->allocator, u8, len);
+
+ isize i = 0;
+ gb_memmove(child.text+i, parent.text, parent.len);
+ i += parent.len;
+ child.text[i++] = '.';
+ gb_memmove(child.text+i, cn.text, cn.len);
+
+ map_string_set(&m->type_names, hash_pointer(field->type), child);
+ llir_gen_global_type_name(m, field, child);
+}
+
+void llir_gen_global_type_name(llirModule *m, Entity *e, String name) {
+ llirValue *t = llir_make_value_type_name(m->allocator, name, e->type);
+ llir_module_add_value(m, e, t);
+ map_llir_value_set(&m->members, hash_string(name), t);
+
+ if (is_type_union(e->type)) {
+ Type *bt = base_type(e->type);
+ TypeRecord *s = &bt->Record;
+ // NOTE(bill): Zeroth entry is null (for `match type` stmts)
+ for (isize j = 1; j < s->field_count; j++) {
+ llir_mangle_sub_type_name(m, s->fields[j], name);
+ }
+ }
+}
+
+
+
+
+void llir_build_defer_stmt(llirProcedure *proc, llirDefer d) {
+ llirBlock *b = llir_add_block(proc, NULL, "defer");
+ // NOTE(bill): The prev block may defer injection before it's terminator
+ llirInstr *last_instr = llir_get_last_instr(proc->curr_block);
+ if (last_instr == NULL || !llir_is_instr_terminating(last_instr)) {
+ llir_emit_jump(proc, b);
+ }
+ proc->curr_block = b;
+ llir_emit_comment(proc, str_lit("defer"));
+ if (d.kind == llirDefer_Node) {
+ llir_build_stmt(proc, d.stmt);
+ } else if (d.kind == llirDefer_Instr) {
+ // NOTE(bill): Need to make a new copy
+ llirValue *instr = cast(llirValue *)gb_alloc_copy(proc->module->allocator, d.instr, gb_size_of(llirValue));
+ llir_emit(proc, instr);
+ }
+}
+
+
+
+llirValue *llir_find_global_variable(llirProcedure *proc, String name) {
+ llirValue **value = map_llir_value_get(&proc->module->members, hash_string(name));
+ GB_ASSERT_MSG(value != NULL, "Unable to find global variable `%.*s`", LIT(name));
+ return *value;
+}
+
+llirValue *llir_find_implicit_value_backing(llirProcedure *proc, ImplicitValueId id) {
+ Entity *e = proc->module->info->implicit_values[id];
+ GB_ASSERT(e->kind == Entity_ImplicitValue);
+ Entity *backing = e->ImplicitValue.backing;
+ llirValue **value = map_llir_value_get(&proc->module->values, hash_pointer(backing));
+ GB_ASSERT_MSG(value != NULL, "Unable to find implicit value backing `%.*s`", LIT(backing->token.string));
+ return *value;
+}
+
+void llir_build_stmt_list(llirProcedure *proc, AstNodeArray stmts);
+
+llirValue *llir_build_single_expr(llirProcedure *proc, AstNode *expr, TypeAndValue *tv) {
+ expr = unparen_expr(expr);
+ switch (expr->kind) {
+ case_ast_node(bl, BasicLit, expr);
+ GB_PANIC("Non-constant basic literal");
+ case_end;
+
+ case_ast_node(i, Ident, expr);
+ Entity *e = *map_entity_get(&proc->module->info->uses, hash_pointer(expr));
+ if (e->kind == Entity_Builtin) {
+ Token token = ast_node_token(expr);
+ GB_PANIC("TODO(bill): llir_build_single_expr Entity_Builtin `%.*s`\n"
+ "\t at %.*s(%td:%td)", LIT(builtin_procs[e->Builtin.id].name),
+ LIT(token.pos.file), token.pos.line, token.pos.column);
+ return NULL;
+ } else if (e->kind == Entity_Nil) {
+ return llir_make_value_nil(proc->module->allocator, tv->type);
+ } else if (e->kind == Entity_ImplicitValue) {
+ return llir_emit_load(proc, llir_find_implicit_value_backing(proc, e->ImplicitValue.id));
+ }
+
+ llirValue **found = map_llir_value_get(&proc->module->values, hash_pointer(e));
+ if (found) {
+ llirValue *v = *found;
+ if (v->kind == llirValue_Proc) {
+ return v;
+ }
+ // if (e->kind == Entity_Variable && e->Variable.param) {
+ // return v;
+ // }
+ return llir_emit_load(proc, v);
+ } else if (e != NULL && e->kind == Entity_Variable) {
+ return llir_addr_load(proc, llir_build_addr(proc, expr));
+ }
+ GB_PANIC("NULL value for expression from identifier: %.*s", LIT(i->string));
+ return NULL;
+ case_end;
+
+ case_ast_node(re, RunExpr, expr);
+ // TODO(bill): Run Expression
+ return llir_build_single_expr(proc, re->expr, tv);
+ case_end;
+
+ case_ast_node(de, DerefExpr, expr);
+ return llir_addr_load(proc, llir_build_addr(proc, expr));
+ case_end;
+
+ case_ast_node(se, SelectorExpr, expr);
+ TypeAndValue *tav = map_tav_get(&proc->module->info->types, hash_pointer(expr));
+ GB_ASSERT(tav != NULL);
+ return llir_addr_load(proc, llir_build_addr(proc, expr));
+ case_end;
+
+ case_ast_node(be, BlockExpr, expr);
+ llir_emit_comment(proc, str_lit("BlockExpr"));
+ llir_open_scope(proc);
+
+ AstNodeArray stmts = be->stmts;
+ stmts.count--;
+ llir_build_stmt_list(proc, stmts);
+
+ AstNode *give_stmt = be->stmts.e[be->stmts.count-1];
+ GB_ASSERT(give_stmt->kind == AstNode_ExprStmt);
+ AstNode *give_expr = give_stmt->ExprStmt.expr;
+ GB_ASSERT(give_expr->kind == AstNode_GiveExpr);
+ llirValue *value = llir_build_expr(proc, give_expr);
+
+ llir_close_scope(proc, llirDeferExit_Default, NULL);
+
+ return value;
+ case_end;
+
+ case_ast_node(ie, IfExpr, expr);
+ llir_emit_comment(proc, str_lit("IfExpr"));
+ if (ie->init != NULL) {
+ llirBlock *init = llir_add_block(proc, expr, "if.init");
+ llir_emit_jump(proc, init);
+ proc->curr_block = init;
+ llir_build_stmt(proc, ie->init);
+ }
+
+ llirValueArray edges = {0};
+ array_init_reserve(&edges, proc->module->allocator, 2);
+
+ GB_ASSERT(ie->else_expr != NULL);
+ llirBlock *then = llir_add_block(proc, expr, "if.then");
+ llirBlock *done = llir_add_block(proc, expr, "if.done"); // NOTE(bill): Append later
+ llirBlock *else_ = llir_add_block(proc, ie->else_expr, "if.else");
+
+ llirValue *cond = llir_build_cond(proc, ie->cond, then, else_);
+ proc->curr_block = then;
+
+ llir_open_scope(proc);
+ array_add(&edges, llir_build_expr(proc, ie->body));
+ llir_close_scope(proc, llirDeferExit_Default, NULL);
+
+ llir_emit_jump(proc, done);
+ proc->curr_block = else_;
+
+ llir_open_scope(proc);
+ array_add(&edges, llir_build_expr(proc, ie->else_expr));
+ llir_close_scope(proc, llirDeferExit_Default, NULL);
+
+ llir_emit_jump(proc, done);
+ proc->curr_block = done;
+
+ Type *type = type_of_expr(proc->module->info, expr);
+
+ return llir_emit(proc, llir_make_instr_phi(proc, edges, type));
+ case_end;
+
+ case_ast_node(ge, GiveExpr, expr);
+ llir_emit_comment(proc, str_lit("GiveExpr"));
+
+ llirValue *v = NULL;
+ Type *give_type = type_of_expr(proc->module->info, expr);
+ GB_ASSERT(give_type != NULL);
+ if (give_type->kind != Type_Tuple) {
+ v = llir_emit_conv(proc, llir_build_expr(proc, ge->results.e[0]), give_type);
+ } else {
+ TypeTuple *tuple = &give_type->Tuple;
+ gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&proc->module->tmp_arena);
+
+ llirValueArray results;
+ array_init_reserve(&results, proc->module->tmp_allocator, tuple->variable_count);
+
+ for_array(res_index, ge->results) {
+ llirValue *res = llir_build_expr(proc, ge->results.e[res_index]);
+ Type *t = llir_type(res);
+ if (t->kind == Type_Tuple) {
+ for (isize i = 0; i < t->Tuple.variable_count; i++) {
+ Entity *e = t->Tuple.variables[i];
+ llirValue *v = llir_emit_struct_ev(proc, res, i);
+ array_add(&results, v);
+ }
+ } else {
+ array_add(&results, res);
+ }
+ }
+
+ v = llir_add_local_generated(proc, give_type);
+ for_array(i, results) {
+ Entity *e = tuple->variables[i];
+ llirValue *res = llir_emit_conv(proc, results.e[i], e->type);
+ llirValue *field = llir_emit_struct_ep(proc, v, i);
+ llir_emit_store(proc, field, res);
+ }
+ v = llir_emit_load(proc, v);
+
+ gb_temp_arena_memory_end(tmp);
+ }
+
+ return v;
+ case_end;
+
+ case_ast_node(ue, UnaryExpr, expr);
+ switch (ue->op.kind) {
+ case Token_Pointer:
+ return llir_emit_ptr_offset(proc, llir_build_addr(proc, ue->expr).addr, v_zero); // Make a copy of the pointer
+
+ case Token_Maybe:
+ return llir_emit_conv(proc, llir_build_expr(proc, ue->expr), type_of_expr(proc->module->info, expr));
+
+ case Token_Add:
+ return llir_build_expr(proc, ue->expr);
+
+ case Token_Not: // Boolean not
+ case Token_Xor: // Bitwise not
+ case Token_Sub: // Bitwise not
+ return llir_emit(proc, llir_make_instr_unary_op(proc, ue->op.kind, llir_build_expr(proc, ue->expr), tv->type));
+ }
+ case_end;
+
+ case_ast_node(be, BinaryExpr, expr);
+ llirValue *left = llir_build_expr(proc, be->left);
+ Type *type = default_type(tv->type);
+
+ switch (be->op.kind) {
+ case Token_Add:
+ case Token_Sub:
+ case Token_Mul:
+ case Token_Quo:
+ case Token_Mod:
+ case Token_And:
+ case Token_Or:
+ case Token_Xor:
+ case Token_AndNot:
+ case Token_Shl:
+ case Token_Shr: {
+ llirValue *right = llir_build_expr(proc, be->right);
+ return llir_emit_arith(proc, be->op.kind, left, right, type);
+ }
+
+
+ case Token_CmpEq:
+ case Token_NotEq:
+ case Token_Lt:
+ case Token_LtEq:
+ case Token_Gt:
+ case Token_GtEq: {
+ llirValue *right = llir_build_expr(proc, be->right);
+ llirValue *cmp = llir_emit_comp(proc, be->op.kind, left, right);
+ return llir_emit_conv(proc, cmp, type);
+ } break;
+
+ case Token_CmpAnd:
+ case Token_CmpOr:
+ return llir_emit_logical_binary_expr(proc, expr);
+
+ case Token_as:
+ llir_emit_comment(proc, str_lit("cast - as"));
+ return llir_emit_conv(proc, left, type);
+
+ case Token_transmute:
+ llir_emit_comment(proc, str_lit("cast - transmute"));
+ return llir_emit_transmute(proc, left, type);
+
+ case Token_down_cast:
+ llir_emit_comment(proc, str_lit("cast - down_cast"));
+ return llir_emit_down_cast(proc, left, type);
+
+ case Token_union_cast:
+ llir_emit_comment(proc, str_lit("cast - union_cast"));
+ return llir_emit_union_cast(proc, left, type);
+
+ default:
+ GB_PANIC("Invalid binary expression");
+ break;
+ }
+ case_end;
+
+ case_ast_node(pl, ProcLit, expr);
+ // NOTE(bill): Generate a new name
+ // parent$count
+ isize name_len = proc->name.len + 1 + 8 + 1;
+ u8 *name_text = gb_alloc_array(proc->module->allocator, u8, name_len);
+ name_len = gb_snprintf(cast(char *)name_text, name_len, "%.*s$%d", LIT(proc->name), cast(i32)proc->children.count);
+ String name = make_string(name_text, name_len-1);
+
+ Type *type = type_of_expr(proc->module->info, expr);
+ llirValue *value = llir_make_value_procedure(proc->module->allocator,
+ proc->module, NULL, type, pl->type, pl->body, name);
+
+ value->Proc.tags = pl->tags;
+ value->Proc.parent = proc;
+
+ array_add(&proc->children, &value->Proc);
+ array_add(&proc->module->procs_to_generate, value);
+
+ return value;
+ case_end;
+
+
+ case_ast_node(cl, CompoundLit, expr);
+ return llir_emit_load(proc, llir_build_addr(proc, expr).addr);
+ case_end;
+
+
+ case_ast_node(ce, CallExpr, expr);
+ AstNode *p = unparen_expr(ce->proc);
+ if (p->kind == AstNode_Ident) {
+ Entity **found = map_entity_get(&proc->module->info->uses, hash_pointer(p));
+ if (found && (*found)->kind == Entity_Builtin) {
+ Entity *e = *found;
+ switch (e->Builtin.id) {
+ case BuiltinProc_type_info: {
+ Type *t = default_type(type_of_expr(proc->module->info, ce->args.e[0]));
+ return llir_type_info(proc, t);
+ } break;
+ case BuiltinProc_type_info_of_val: {
+ Type *t = default_type(type_of_expr(proc->module->info, ce->args.e[0]));
+ return llir_type_info(proc, t);
+ } break;
+
+ case BuiltinProc_new: {
+ llir_emit_comment(proc, str_lit("new"));
+ // new :: proc(Type) -> ^Type
+ gbAllocator allocator = proc->module->allocator;
+
+ Type *type = type_of_expr(proc->module->info, ce->args.e[0]);
+ Type *ptr_type = make_type_pointer(allocator, type);
+
+ i64 s = type_size_of(proc->module->sizes, allocator, type);
+ i64 a = type_align_of(proc->module->sizes, allocator, type);
+
+ llirValue **args = gb_alloc_array(allocator, llirValue *, 2);
+ args[0] = llir_make_const_int(allocator, s);
+ args[1] = llir_make_const_int(allocator, a);
+ llirValue *call = llir_emit_global_call(proc, "alloc_align", args, 2);
+ llirValue *v = llir_emit_conv(proc, call, ptr_type);
+ return v;
+ } break;
+
+ case BuiltinProc_new_slice: {
+ llir_emit_comment(proc, str_lit("new_slice"));
+ // new_slice :: proc(Type, len: int[, cap: int]) -> ^Type
+ gbAllocator allocator = proc->module->allocator;
+
+ Type *type = type_of_expr(proc->module->info, ce->args.e[0]);
+ Type *ptr_type = make_type_pointer(allocator, type);
+ Type *slice_type = make_type_slice(allocator, type);
+
+ i64 s = type_size_of(proc->module->sizes, allocator, type);
+ i64 a = type_align_of(proc->module->sizes, allocator, type);
+
+ llirValue *elem_size = llir_make_const_int(allocator, s);
+ llirValue *elem_align = llir_make_const_int(allocator, a);
+
+ llirValue *len = llir_emit_conv(proc, llir_build_expr(proc, ce->args.e[1]), t_int);
+ llirValue *cap = len;
+ if (ce->args.count == 3) {
+ cap = llir_emit_conv(proc, llir_build_expr(proc, ce->args.e[2]), t_int);
+ }
+
+ llir_emit_slice_bounds_check(proc, ast_node_token(ce->args.e[1]), v_zero, len, false);
+
+ llirValue *slice_size = llir_emit_arith(proc, Token_Mul, elem_size, cap, t_int);
+
+ llirValue **args = gb_alloc_array(allocator, llirValue *, 2);
+ args[0] = slice_size;
+ args[1] = elem_align;
+ llirValue *call = llir_emit_global_call(proc, "alloc_align", args, 2);
+
+ llirValue *ptr = llir_emit_conv(proc, call, ptr_type);
+ llirValue *slice = llir_add_local_generated(proc, slice_type);
+
+ llirValue *gep0 = llir_emit_struct_ep(proc, slice, 0);
+ llirValue *gep1 = llir_emit_struct_ep(proc, slice, 1);
+ llirValue *gep2 = llir_emit_struct_ep(proc, slice, 2);
+ llir_emit_store(proc, gep0, ptr);
+ llir_emit_store(proc, gep1, len);
+ llir_emit_store(proc, gep2, cap);
+ return llir_emit_load(proc, slice);
+ } break;
+
+ case BuiltinProc_assert: {
+ llir_emit_comment(proc, str_lit("assert"));
+ llirValue *cond = llir_build_expr(proc, ce->args.e[0]);
+ GB_ASSERT(is_type_boolean(llir_type(cond)));
+
+ cond = llir_emit_comp(proc, Token_CmpEq, cond, v_false);
+ llirBlock *err = llir_add_block(proc, NULL, "builtin.assert.err");
+ llirBlock *done = llir_add_block(proc, NULL, "builtin.assert.done");
+
+ llir_emit_if(proc, cond, err, done);
+ proc->curr_block = err;
+
+ // TODO(bill): Cleanup allocations here
+ Token token = ast_node_token(ce->args.e[0]);
+ TokenPos pos = token.pos;
+ gbString expr = expr_to_string(ce->args.e[0]);
+ isize expr_len = gb_string_length(expr);
+ String expr_str = {0};
+ expr_str.text = cast(u8 *)gb_alloc_copy_align(proc->module->allocator, expr, expr_len, 1);
+ expr_str.len = expr_len;
+ gb_string_free(expr);
+
+
+ llirValue **args = gb_alloc_array(proc->module->allocator, llirValue *, 4);
+ args[0] = llir_make_const_string(proc->module->allocator, pos.file);
+ args[1] = llir_make_const_int(proc->module->allocator, pos.line);
+ args[2] = llir_make_const_int(proc->module->allocator, pos.column);
+ args[3] = llir_make_const_string(proc->module->allocator, expr_str);
+ llir_emit_global_call(proc, "__assert", args, 4);
+
+ llir_emit_jump(proc, done);
+ proc->curr_block = done;
+
+ return NULL;
+ } break;
+
+ case BuiltinProc_panic: {
+ llir_emit_comment(proc, str_lit("panic"));
+ llirValue *msg = llir_build_expr(proc, ce->args.e[0]);
+ GB_ASSERT(is_type_string(llir_type(msg)));
+
+ Token token = ast_node_token(ce->args.e[0]);
+ TokenPos pos = token.pos;
+
+ llirValue **args = gb_alloc_array(proc->module->allocator, llirValue *, 4);
+ args[0] = llir_make_const_string(proc->module->allocator, pos.file);
+ args[1] = llir_make_const_int(proc->module->allocator, pos.line);
+ args[2] = llir_make_const_int(proc->module->allocator, pos.column);
+ args[3] = msg;
+ llir_emit_global_call(proc, "__assert", args, 4);
+
+ return NULL;
+ } break;
+
+
+ case BuiltinProc_copy: {
+ llir_emit_comment(proc, str_lit("copy"));
+ // copy :: proc(dst, src: []Type) -> int
+ AstNode *dst_node = ce->args.e[0];
+ AstNode *src_node = ce->args.e[1];
+ llirValue *dst_slice = llir_build_expr(proc, dst_node);
+ llirValue *src_slice = llir_build_expr(proc, src_node);
+ Type *slice_type = base_type(llir_type(dst_slice));
+ GB_ASSERT(slice_type->kind == Type_Slice);
+ Type *elem_type = slice_type->Slice.elem;
+ i64 size_of_elem = type_size_of(proc->module->sizes, proc->module->allocator, elem_type);
+
+ llirValue *dst = llir_emit_conv(proc, llir_slice_elem(proc, dst_slice), t_rawptr);
+ llirValue *src = llir_emit_conv(proc, llir_slice_elem(proc, src_slice), t_rawptr);
+
+ llirValue *len_dst = llir_slice_len(proc, dst_slice);
+ llirValue *len_src = llir_slice_len(proc, src_slice);
+
+ llirValue *cond = llir_emit_comp(proc, Token_Lt, len_dst, len_src);
+ llirValue *len = llir_emit_select(proc, cond, len_dst, len_src);
+
+ llirValue *elem_size = llir_make_const_int(proc->module->allocator, size_of_elem);
+ llirValue *byte_count = llir_emit_arith(proc, Token_Mul, len, elem_size, t_int);
+
+ llirValue **args = gb_alloc_array(proc->module->allocator, llirValue *, 3);
+ args[0] = dst;
+ args[1] = src;
+ args[2] = byte_count;
+
+ llir_emit_global_call(proc, "__mem_copy", args, 3);
+
+ return len;
+ } break;
+ #if 0
+ case BuiltinProc_append: {
+ llir_emit_comment(proc, str_lit("append"));
+ // append :: proc(s: ^[]Type, item: Type) -> bool
+ AstNode *sptr_node = ce->args.e[0];
+ AstNode *item_node = ce->args.e[1];
+ llirValue *slice_ptr = llir_build_expr(proc, sptr_node);
+ llirValue *slice = llir_emit_load(proc, slice_ptr);
+
+ llirValue *elem = llir_slice_elem(proc, slice);
+ llirValue *len = llir_slice_len(proc, slice);
+ llirValue *cap = llir_slice_cap(proc, slice);
+
+ Type *elem_type = type_deref(llir_type(elem));
+
+ llirValue *item_value = llir_build_expr(proc, item_node);
+ item_value = llir_emit_conv(proc, item_value, elem_type);
+
+ llirValue *item = llir_add_local_generated(proc, elem_type);
+ llir_emit_store(proc, item, item_value);
+
+
+ // NOTE(bill): Check if can append is possible
+ llirValue *cond = llir_emit_comp(proc, Token_Lt, len, cap);
+ llirBlock *able = llir_add_block(proc, NULL, "builtin.append.able");
+ llirBlock *done = llir_add_block(proc, NULL, "builtin.append.done");
+
+ llir_emit_if(proc, cond, able, done);
+ proc->curr_block = able;
+
+ // Add new slice item
+ i64 item_size = type_size_of(proc->module->sizes, proc->module->allocator, elem_type);
+ llirValue *byte_count = llir_make_const_int(proc->module->allocator, item_size);
+
+ llirValue *offset = llir_emit_ptr_offset(proc, elem, len);
+ offset = llir_emit_conv(proc, offset, t_rawptr);
+
+ item = llir_emit_ptr_offset(proc, item, v_zero);
+ item = llir_emit_conv(proc, item, t_rawptr);
+
+ llirValue **args = gb_alloc_array(proc->module->allocator, llirValue *, 3);
+ args[0] = offset;
+ args[1] = item;
+ args[2] = byte_count;
+
+ llir_emit_global_call(proc, "__mem_copy", args, 3);
+
+ // Increment slice length
+ llirValue *new_len = llir_emit_arith(proc, Token_Add, len, v_one, t_int);
+ llirValue *gep = llir_emit_struct_ep(proc, slice_ptr, 1);
+ llir_emit_store(proc, gep, new_len);
+
+ llir_emit_jump(proc, done);
+ proc->curr_block = done;
+
+ return llir_emit_conv(proc, cond, t_bool);
+ } break;
+ #endif
+
+ case BuiltinProc_swizzle: {
+ llir_emit_comment(proc, str_lit("swizzle"));
+ llirValue *vector = llir_build_expr(proc, ce->args.e[0]);
+ isize index_count = ce->args.count-1;
+ if (index_count == 0) {
+ return vector;
+ }
+
+ i32 *indices = gb_alloc_array(proc->module->allocator, i32, index_count);
+ isize index = 0;
+ for_array(i, ce->args) {
+ if (i == 0) continue;
+ TypeAndValue *tv = type_and_value_of_expression(proc->module->info, ce->args.e[i]);
+ GB_ASSERT(is_type_integer(tv->type));
+ GB_ASSERT(tv->value.kind == ExactValue_Integer);
+ indices[index++] = cast(i32)tv->value.value_integer;
+ }
+
+ return llir_emit(proc, llir_make_instr_vector_shuffle(proc, vector, indices, index_count));
+
+ } break;
+
+ case BuiltinProc_slice_ptr: {
+ llir_emit_comment(proc, str_lit("slice_ptr"));
+ llirValue *ptr = llir_build_expr(proc, ce->args.e[0]);
+ llirValue *len = llir_build_expr(proc, ce->args.e[1]);
+ llirValue *cap = len;
+
+ len = llir_emit_conv(proc, len, t_int);
+
+ if (ce->args.count == 3) {
+ cap = llir_build_expr(proc, ce->args.e[2]);
+ cap = llir_emit_conv(proc, cap, t_int);
+ }
+
+
+ Type *slice_type = make_type_slice(proc->module->allocator, type_deref(llir_type(ptr)));
+ llirValue *slice = llir_add_local_generated(proc, slice_type);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, slice, 0), ptr);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, slice, 1), len);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, slice, 2), cap);
+ return llir_emit_load(proc, slice);
+ } break;
+
+ case BuiltinProc_min: {
+ llir_emit_comment(proc, str_lit("min"));
+ Type *t = type_of_expr(proc->module->info, expr);
+ llirValue *x = llir_emit_conv(proc, llir_build_expr(proc, ce->args.e[0]), t);
+ llirValue *y = llir_emit_conv(proc, llir_build_expr(proc, ce->args.e[1]), t);
+ llirValue *cond = llir_emit_comp(proc, Token_Lt, x, y);
+ return llir_emit_select(proc, cond, x, y);
+ } break;
+
+ case BuiltinProc_max: {
+ llir_emit_comment(proc, str_lit("max"));
+ Type *t = type_of_expr(proc->module->info, expr);
+ llirValue *x = llir_emit_conv(proc, llir_build_expr(proc, ce->args.e[0]), t);
+ llirValue *y = llir_emit_conv(proc, llir_build_expr(proc, ce->args.e[1]), t);
+ llirValue *cond = llir_emit_comp(proc, Token_Gt, x, y);
+ return llir_emit_select(proc, cond, x, y);
+ } break;
+
+ case BuiltinProc_abs: {
+ llir_emit_comment(proc, str_lit("abs"));
+ gbAllocator a = proc->module->allocator;
+
+ llirValue *x = llir_build_expr(proc, ce->args.e[0]);
+ Type *original_type = llir_type(x);
+ Type *t = original_type;
+ i64 sz = type_size_of(proc->module->sizes, a, t);
+ GB_ASSERT(is_type_integer(t) || is_type_float(t));
+ if (is_type_float(t)) {
+ if (sz == 4) {
+ t = t_i32;
+ } else if (sz == 8) {
+ t = t_i64;
+ } else {
+ GB_PANIC("unknown float type for `abs`");
+ }
+
+ x = llir_emit_bitcast(proc, x, t);
+ }
+
+ /*
+ NOTE(bill): See Hacker's Delight, section 2-4.
+ m := x >> (int_size-1)
+ b := x ^ m
+ return b - m
+ */
+
+ llirValue *m = llir_emit_arith(proc, Token_Shr,
+ x,
+ llir_make_value_constant(a, t, make_exact_value_integer(sz-1)),
+ t);
+ llirValue *b = llir_emit_arith(proc, Token_Xor, x, m, t);
+ llirValue *v = llir_emit_arith(proc, Token_Sub, b, m, t);
+
+ if (is_type_float(t)) {
+ v = llir_emit_bitcast(proc, v, original_type);
+ }
+ return v;
+ } break;
+
+ case BuiltinProc_clamp: {
+ llir_emit_comment(proc, str_lit("clamp"));
+ Type *t = type_of_expr(proc->module->info, expr);
+ llirValue *x = llir_emit_conv(proc, llir_build_expr(proc, ce->args.e[0]), t);
+ llirValue *min = llir_emit_conv(proc, llir_build_expr(proc, ce->args.e[1]), t);
+ llirValue *max = llir_emit_conv(proc, llir_build_expr(proc, ce->args.e[2]), t);
+ llirValue *cond;
+ cond = llir_emit_comp(proc, Token_Gt, min, x);
+ x = llir_emit_select(proc, cond, min, x);
+ cond = llir_emit_comp(proc, Token_Lt, max, x);
+ x = llir_emit_select(proc, cond, max, x);
+ return x;
+ } break;
+ }
+ }
+ }
+
+ // NOTE(bill): Regular call
+ llirValue *value = llir_build_expr(proc, ce->proc);
+ GB_ASSERT(value != NULL);
+ Type *proc_type_ = base_type(llir_type(value));
+ GB_ASSERT(proc_type_->kind == Type_Proc);
+ TypeProc *type = &proc_type_->Proc;
+
+ isize arg_index = 0;
+
+ isize arg_count = 0;
+ for_array(i, ce->args) {
+ AstNode *a = ce->args.e[i];
+ Type *at = base_type(type_of_expr(proc->module->info, a));
+ if (at->kind == Type_Tuple) {
+ arg_count += at->Tuple.variable_count;
+ } else {
+ arg_count++;
+ }
+ }
+ llirValue **args = gb_alloc_array(proc->module->allocator, llirValue *, arg_count);
+ bool variadic = proc_type_->Proc.variadic;
+ bool vari_expand = ce->ellipsis.pos.line != 0;
+
+ for_array(i, ce->args) {
+ llirValue *a = llir_build_expr(proc, ce->args.e[i]);
+ Type *at = llir_type(a);
+ if (at->kind == Type_Tuple) {
+ for (isize i = 0; i < at->Tuple.variable_count; i++) {
+ Entity *e = at->Tuple.variables[i];
+ llirValue *v = llir_emit_struct_ev(proc, a, i);
+ args[arg_index++] = v;
+ }
+ } else {
+ args[arg_index++] = a;
+ }
+ }
+
+ TypeTuple *pt = &type->params->Tuple;
+
+ if (variadic) {
+ isize i = 0;
+ for (; i < type->param_count-1; i++) {
+ args[i] = llir_emit_conv(proc, args[i], pt->variables[i]->type);
+ }
+ if (!vari_expand) {
+ Type *variadic_type = pt->variables[i]->type;
+ GB_ASSERT(is_type_slice(variadic_type));
+ variadic_type = base_type(variadic_type)->Slice.elem;
+ for (; i < arg_count; i++) {
+ args[i] = llir_emit_conv(proc, args[i], variadic_type);
+ }
+ }
+ } else {
+ for (isize i = 0; i < arg_count; i++) {
+ args[i] = llir_emit_conv(proc, args[i], pt->variables[i]->type);
+ }
+ }
+
+ if (variadic && !vari_expand) {
+ llir_emit_comment(proc, str_lit("variadic call argument generation"));
+ gbAllocator allocator = proc->module->allocator;
+ Type *slice_type = pt->variables[type->param_count-1]->type;
+ Type *elem_type = base_type(slice_type)->Slice.elem;
+ llirValue *slice = llir_add_local_generated(proc, slice_type);
+ isize slice_len = arg_count+1 - type->param_count;
+
+ if (slice_len > 0) {
+ llirValue *base_array = llir_add_local_generated(proc, make_type_array(allocator, elem_type, slice_len));
+
+ for (isize i = type->param_count-1, j = 0; i < arg_count; i++, j++) {
+ llirValue *addr = llir_emit_array_epi(proc, base_array, j);
+ llir_emit_store(proc, addr, args[i]);
+ }
+
+ llirValue *base_elem = llir_emit_array_epi(proc, base_array, 0);
+ llirValue *slice_elem = llir_emit_struct_ep(proc, slice, 0);
+ llir_emit_store(proc, slice_elem, base_elem);
+ llirValue *len = llir_make_const_int(allocator, slice_len);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, slice, 1), len);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, slice, 2), len);
+ }
+
+ arg_count = type->param_count;
+ args[arg_count-1] = llir_emit_load(proc, slice);
+ }
+
+ return llir_emit_call(proc, value, args, arg_count);
+ case_end;
+
+ case_ast_node(de, DemaybeExpr, expr);
+ return llir_emit_load(proc, llir_build_addr(proc, expr).addr);
+ case_end;
+
+ case_ast_node(se, SliceExpr, expr);
+ return llir_emit_load(proc, llir_build_addr(proc, expr).addr);
+ case_end;
+
+ case_ast_node(ie, IndexExpr, expr);
+ return llir_emit_load(proc, llir_build_addr(proc, expr).addr);
+ case_end;
+ }
+
+ GB_PANIC("Unexpected expression: %.*s", LIT(ast_node_strings[expr->kind]));
+ return NULL;
+}
+
+
+llirValue *llir_build_expr(llirProcedure *proc, AstNode *expr) {
+ expr = unparen_expr(expr);
+
+ TypeAndValue *tv = map_tav_get(&proc->module->info->types, hash_pointer(expr));
+ GB_ASSERT_NOT_NULL(tv);
+
+ if (tv->value.kind != ExactValue_Invalid) {
+ return llir_add_module_constant(proc->module, tv->type, tv->value);
+ }
+
+ llirValue *value = NULL;
+ if (tv->mode == Addressing_Variable) {
+ value = llir_addr_load(proc, llir_build_addr(proc, expr));
+ } else {
+ value = llir_build_single_expr(proc, expr, tv);
+ }
+
+ return value;
+}
+
+llirValue *llir_add_using_variable(llirProcedure *proc, Entity *e) {
+ GB_ASSERT(e->kind == Entity_Variable && e->flags & EntityFlag_Anonymous);
+ String name = e->token.string;
+ Entity *parent = e->using_parent;
+ Selection sel = lookup_field(proc->module->allocator, parent->type, name, false);
+ GB_ASSERT(sel.entity != NULL);
+ llirValue **pv = map_llir_value_get(&proc->module->values, hash_pointer(parent));
+ llirValue *v = NULL;
+ if (pv != NULL) {
+ v = *pv;
+ } else {
+ v = llir_build_addr(proc, e->using_expr).addr;
+ }
+ GB_ASSERT(v != NULL);
+ llirValue *var = llir_emit_deep_field_gep(proc, parent->type, v, sel);
+ map_llir_value_set(&proc->module->values, hash_pointer(e), var);
+ return var;
+}
+
+bool llir_is_elem_const(llirModule *m, AstNode *elem, Type *elem_type) {
+ if (base_type(elem_type) == t_any) {
+ return false;
+ }
+ if (elem->kind == AstNode_FieldValue) {
+ elem = elem->FieldValue.value;
+ }
+ TypeAndValue *tav = type_and_value_of_expression(m->info, elem);
+ GB_ASSERT(tav != NULL);
+ return tav->value.kind != ExactValue_Invalid;
+}
+
+llirAddr llir_build_addr_from_entity(llirProcedure *proc, Entity *e, AstNode *expr) {
+ GB_ASSERT(e != NULL);
+ GB_ASSERT(e->kind != Entity_Constant);
+
+ llirValue *v = NULL;
+ llirValue **found = map_llir_value_get(&proc->module->values, hash_pointer(e));
+ if (found) {
+ v = *found;
+ } else if (e->kind == Entity_Variable && e->flags & EntityFlag_Anonymous) {
+ v = llir_add_using_variable(proc, e);
+ } else if (e->kind == Entity_ImplicitValue) {
+ // TODO(bill): Should a copy be made?
+ v = llir_find_implicit_value_backing(proc, e->ImplicitValue.id);
+ }
+
+ if (v == NULL) {
+ GB_PANIC("Unknown value: %.*s, entity: %p %.*s\n", LIT(e->token.string), e, LIT(entity_strings[e->kind]));
+ }
+
+ return llir_make_addr(v, expr);
+}
+
+llirAddr llir_build_addr(llirProcedure *proc, AstNode *expr) {
+ switch (expr->kind) {
+ case_ast_node(i, Ident, expr);
+ if (llir_is_blank_ident(expr)) {
+ llirAddr val = {0};
+ return val;
+ }
+
+ Entity *e = entity_of_ident(proc->module->info, expr);
+ return llir_build_addr_from_entity(proc, e, expr);
+ case_end;
+
+ case_ast_node(pe, ParenExpr, expr);
+ return llir_build_addr(proc, unparen_expr(expr));
+ case_end;
+
+ case_ast_node(se, SelectorExpr, expr);
+ llir_emit_comment(proc, str_lit("SelectorExpr"));
+ AstNode *sel = unparen_expr(se->selector);
+ GB_ASSERT(sel->kind == AstNode_Ident);
+ String selector = sel->Ident.string;
+ Type *type = base_type(type_of_expr(proc->module->info, se->expr));
+
+ if (type == t_invalid) {
+ // NOTE(bill): Imports
+ Entity *imp = entity_of_ident(proc->module->info, se->expr);
+ if (imp != NULL) {
+ GB_ASSERT(imp->kind == Entity_ImportName);
+ }
+ return llir_build_addr(proc, unparen_expr(se->selector));
+ } else {
+ Selection sel = lookup_field(proc->module->allocator, type, selector, false);
+ GB_ASSERT(sel.entity != NULL);
+
+ llirValue *a = llir_build_addr(proc, se->expr).addr;
+ a = llir_emit_deep_field_gep(proc, type, a, sel);
+ return llir_make_addr(a, expr);
+ }
+ case_end;
+
+ case_ast_node(ue, UnaryExpr, expr);
+ switch (ue->op.kind) {
+ case Token_Pointer: {
+ return llir_build_addr(proc, ue->expr);
+ }
+ default:
+ GB_PANIC("Invalid unary expression for llir_build_addr");
+ }
+ case_end;
+
+ case_ast_node(be, BinaryExpr, expr);
+ switch (be->op.kind) {
+ case Token_as: {
+ llir_emit_comment(proc, str_lit("Cast - as"));
+ // NOTE(bill): Needed for dereference of pointer conversion
+ Type *type = type_of_expr(proc->module->info, expr);
+ llirValue *v = llir_add_local_generated(proc, type);
+ llir_emit_store(proc, v, llir_emit_conv(proc, llir_build_expr(proc, be->left), type));
+ return llir_make_addr(v, expr);
+ }
+ case Token_transmute: {
+ llir_emit_comment(proc, str_lit("Cast - transmute"));
+ // NOTE(bill): Needed for dereference of pointer conversion
+ Type *type = type_of_expr(proc->module->info, expr);
+ llirValue *v = llir_add_local_generated(proc, type);
+ llir_emit_store(proc, v, llir_emit_transmute(proc, llir_build_expr(proc, be->left), type));
+ return llir_make_addr(v, expr);
+ }
+ default:
+ GB_PANIC("Invalid binary expression for llir_build_addr: %.*s\n", LIT(be->op.string));
+ break;
+ }
+ case_end;
+
+ case_ast_node(ie, IndexExpr, expr);
+ llir_emit_comment(proc, str_lit("IndexExpr"));
+ Type *t = base_type(type_of_expr(proc->module->info, ie->expr));
+ gbAllocator a = proc->module->allocator;
+
+
+ bool deref = is_type_pointer(t);
+ t = type_deref(t);
+
+ llirValue *using_addr = NULL;
+ if (!is_type_indexable(t)) {
+ // Using index expression
+ Entity *using_field = find_using_index_expr(t);
+ if (using_field != NULL) {
+ Selection sel = lookup_field(a, t, using_field->token.string, false);
+ llirValue *e = llir_build_addr(proc, ie->expr).addr;
+ using_addr = llir_emit_deep_field_gep(proc, t, e, sel);
+
+ t = using_field->type;
+ }
+ }
+
+
+ switch (t->kind) {
+ case Type_Vector: {
+ llirValue *vector = NULL;
+ if (using_addr != NULL) {
+ vector = using_addr;
+ } else {
+ vector = llir_build_addr(proc, ie->expr).addr;
+ if (deref) {
+ vector = llir_emit_load(proc, vector);
+ }
+ }
+ llirValue *index = llir_emit_conv(proc, llir_build_expr(proc, ie->index), t_int);
+ llirValue *len = llir_make_const_int(a, t->Vector.count);
+ llir_emit_bounds_check(proc, ast_node_token(ie->index), index, len);
+ return llir_make_addr_vector(vector, index, expr);
+ } break;
+
+ case Type_Array: {
+ llirValue *array = NULL;
+ if (using_addr != NULL) {
+ array = using_addr;
+ } else {
+ array = llir_build_addr(proc, ie->expr).addr;
+ if (deref) {
+ array = llir_emit_load(proc, array);
+ }
+ }
+ llirValue *index = llir_emit_conv(proc, llir_build_expr(proc, ie->index), t_int);
+ llirValue *elem = llir_emit_array_ep(proc, array, index);
+ llirValue *len = llir_make_const_int(a, t->Vector.count);
+ llir_emit_bounds_check(proc, ast_node_token(ie->index), index, len);
+ return llir_make_addr(elem, expr);
+ } break;
+
+ case Type_Slice: {
+ llirValue *slice = NULL;
+ if (using_addr != NULL) {
+ slice = llir_emit_load(proc, using_addr);
+ } else {
+ slice = llir_build_expr(proc, ie->expr);
+ if (deref) {
+ slice = llir_emit_load(proc, slice);
+ }
+ }
+ llirValue *elem = llir_slice_elem(proc, slice);
+ llirValue *len = llir_slice_len(proc, slice);
+ llirValue *index = llir_emit_conv(proc, llir_build_expr(proc, ie->index), t_int);
+ llir_emit_bounds_check(proc, ast_node_token(ie->index), index, len);
+ llirValue *v = llir_emit_ptr_offset(proc, elem, index);
+ return llir_make_addr(v, expr);
+
+ } break;
+
+ case Type_Basic: { // Basic_string
+ TypeAndValue *tv = map_tav_get(&proc->module->info->types, hash_pointer(ie->expr));
+ llirValue *str;
+ llirValue *elem;
+ llirValue *len;
+ llirValue *index;
+
+ if (using_addr != NULL) {
+ str = llir_emit_load(proc, using_addr);
+ } else {
+ str = llir_build_expr(proc, ie->expr);
+ if (deref) {
+ str = llir_emit_load(proc, str);
+ }
+ }
+ elem = llir_string_elem(proc, str);
+ len = llir_string_len(proc, str);
+
+ index = llir_emit_conv(proc, llir_build_expr(proc, ie->index), t_int);
+ llir_emit_bounds_check(proc, ast_node_token(ie->index), index, len);
+
+ return llir_make_addr(llir_emit_ptr_offset(proc, elem, index), expr);
+ } break;
+ }
+ case_end;
+
+ case_ast_node(se, SliceExpr, expr);
+ llir_emit_comment(proc, str_lit("SliceExpr"));
+ gbAllocator a = proc->module->allocator;
+ llirValue *low = v_zero;
+ llirValue *high = NULL;
+
+ if (se->low != NULL) low = llir_build_expr(proc, se->low);
+ if (se->high != NULL) high = llir_build_expr(proc, se->high);
+ llirValue *addr = llir_build_addr(proc, se->expr).addr;
+ llirValue *base = llir_emit_load(proc, addr);
+ Type *type = base_type(llir_type(base));
+
+ if (is_type_pointer(type)) {
+ type = type_deref(type);
+ addr = base;
+ base = llir_emit_load(proc, base);
+ }
+
+ // TODO(bill): Cleanup like mad!
+
+ switch (type->kind) {
+ case Type_Slice: {
+ Type *slice_type = type;
+
+ if (high == NULL) high = llir_slice_len(proc, base);
+
+ llir_emit_slice_bounds_check(proc, se->open, low, high, false);
+
+ llirValue *elem = llir_emit_ptr_offset(proc, llir_slice_elem(proc, base), low);
+ llirValue *len = llir_emit_arith(proc, Token_Sub, high, low, t_int);
+ llirValue *slice = llir_add_local_generated(proc, slice_type);
+
+ llirValue *gep0 = llir_emit_struct_ep(proc, slice, 0);
+ llirValue *gep1 = llir_emit_struct_ep(proc, slice, 1);
+ llir_emit_store(proc, gep0, elem);
+ llir_emit_store(proc, gep1, len);
+
+ return llir_make_addr(slice, expr);
+ }
+
+ case Type_Array: {
+ Type *slice_type = make_type_slice(a, type->Array.elem);
+
+ if (high == NULL) high = llir_array_len(proc, base);
+
+ llir_emit_slice_bounds_check(proc, se->open, low, high, false);
+
+ llirValue *elem = llir_emit_ptr_offset(proc, llir_array_elem(proc, addr), low);
+ llirValue *len = llir_emit_arith(proc, Token_Sub, high, low, t_int);
+ llirValue *slice = llir_add_local_generated(proc, slice_type);
+
+ llirValue *gep0 = llir_emit_struct_ep(proc, slice, 0);
+ llirValue *gep1 = llir_emit_struct_ep(proc, slice, 1);
+ llir_emit_store(proc, gep0, elem);
+ llir_emit_store(proc, gep1, len);
+
+ return llir_make_addr(slice, expr);
+ }
+
+ case Type_Basic: {
+ GB_ASSERT(type == t_string);
+ if (high == NULL) {
+ high = llir_string_len(proc, base);
+ }
+
+ llir_emit_slice_bounds_check(proc, se->open, low, high, true);
+
+ llirValue *elem, *len;
+ len = llir_emit_arith(proc, Token_Sub, high, low, t_int);
+
+ elem = llir_string_elem(proc, base);
+ elem = llir_emit_ptr_offset(proc, elem, low);
+
+ llirValue *str = llir_add_local_generated(proc, t_string);
+ llirValue *gep0 = llir_emit_struct_ep(proc, str, 0);
+ llirValue *gep1 = llir_emit_struct_ep(proc, str, 1);
+ llir_emit_store(proc, gep0, elem);
+ llir_emit_store(proc, gep1, len);
+
+ return llir_make_addr(str, expr);
+ } break;
+ }
+
+ GB_PANIC("Unknown slicable type");
+ case_end;
+
+ case_ast_node(de, DerefExpr, expr);
+ // TODO(bill): Is a ptr copy needed?
+ llirValue *addr = llir_build_expr(proc, de->expr);
+ addr = llir_emit_ptr_offset(proc, addr, v_zero);
+ return llir_make_addr(addr, expr);
+ case_end;
+
+ case_ast_node(de, DemaybeExpr, expr);
+ llir_emit_comment(proc, str_lit("DemaybeExpr"));
+ llirValue *maybe = llir_build_expr(proc, de->expr);
+ Type *t = default_type(type_of_expr(proc->module->info, expr));
+ GB_ASSERT(is_type_tuple(t));
+
+ llirValue *result = llir_add_local_generated(proc, t);
+ llir_emit_store(proc, result, maybe);
+
+ return llir_make_addr(result, expr);
+ case_end;
+
+ case_ast_node(ce, CallExpr, expr);
+ llirValue *e = llir_build_expr(proc, expr);
+ llirValue *v = llir_add_local_generated(proc, llir_type(e));
+ llir_emit_store(proc, v, e);
+ return llir_make_addr(v, expr);
+ case_end;
+
+
+ case_ast_node(cl, CompoundLit, expr);
+ llir_emit_comment(proc, str_lit("CompoundLit"));
+ Type *type = type_of_expr(proc->module->info, expr);
+ Type *bt = base_type(type);
+ llirValue *v = llir_add_local_generated(proc, type);
+
+ Type *et = NULL;
+ switch (bt->kind) {
+ case Type_Vector: et = bt->Vector.elem; break;
+ case Type_Array: et = bt->Array.elem; break;
+ case Type_Slice: et = bt->Slice.elem; break;
+ }
+
+ switch (bt->kind) {
+ default: GB_PANIC("Unknown CompoundLit type: %s", type_to_string(type)); break;
+
+ case Type_Vector: {
+ llirValue *result = llir_add_module_constant(proc->module, type, make_exact_value_compound(expr));
+ for_array(index, cl->elems) {
+ AstNode *elem = cl->elems.e[index];
+ if (llir_is_elem_const(proc->module, elem, et)) {
+ continue;
+ }
+ llirValue *field_elem = llir_build_expr(proc, elem);
+ Type *t = llir_type(field_elem);
+ GB_ASSERT(t->kind != Type_Tuple);
+ llirValue *ev = llir_emit_conv(proc, field_elem, et);
+ llirValue *i = llir_make_const_int(proc->module->allocator, index);
+ result = llir_emit(proc, llir_make_instr_insert_element(proc, result, ev, i));
+ }
+
+ if (cl->elems.count == 1 && bt->Vector.count > 1) {
+ isize index_count = bt->Vector.count;
+ i32 *indices = gb_alloc_array(proc->module->allocator, i32, index_count);
+ for (isize i = 0; i < index_count; i++) {
+ indices[i] = 0;
+ }
+ llirValue *sv = llir_emit(proc, llir_make_instr_vector_shuffle(proc, result, indices, index_count));
+ llir_emit_store(proc, v, sv);
+ return llir_make_addr(v, expr);
+ }
+ llir_emit_store(proc, v, result);
+ } break;
+
+ case Type_Record: {
+ GB_ASSERT(is_type_struct(bt));
+ TypeRecord *st = &bt->Record;
+ if (cl->elems.count > 0) {
+ llir_emit_store(proc, v, llir_add_module_constant(proc->module, type, make_exact_value_compound(expr)));
+ for_array(field_index, cl->elems) {
+ AstNode *elem = cl->elems.e[field_index];
+
+ llirValue *field_expr = NULL;
+ Entity *field = NULL;
+ isize index = field_index;
+
+ if (elem->kind == AstNode_FieldValue) {
+ ast_node(fv, FieldValue, elem);
+ Selection sel = lookup_field(proc->module->allocator, bt, fv->field->Ident.string, false);
+ index = sel.index.e[0];
+ elem = fv->value;
+ } else {
+ TypeAndValue *tav = type_and_value_of_expression(proc->module->info, elem);
+ Selection sel = lookup_field(proc->module->allocator, bt, st->fields_in_src_order[field_index]->token.string, false);
+ index = sel.index.e[0];
+ }
+
+ field = st->fields[index];
+ if (llir_is_elem_const(proc->module, elem, field->type)) {
+ continue;
+ }
+
+ field_expr = llir_build_expr(proc, elem);
+
+ GB_ASSERT(llir_type(field_expr)->kind != Type_Tuple);
+
+ Type *ft = field->type;
+ llirValue *fv = llir_emit_conv(proc, field_expr, ft);
+ llirValue *gep = llir_emit_struct_ep(proc, v, index);
+ llir_emit_store(proc, gep, fv);
+ }
+ }
+ } break;
+ case Type_Array: {
+ if (cl->elems.count > 0) {
+ llir_emit_store(proc, v, llir_add_module_constant(proc->module, type, make_exact_value_compound(expr)));
+ for_array(i, cl->elems) {
+ AstNode *elem = cl->elems.e[i];
+ if (llir_is_elem_const(proc->module, elem, et)) {
+ continue;
+ }
+ llirValue *field_expr = llir_build_expr(proc, elem);
+ Type *t = llir_type(field_expr);
+ GB_ASSERT(t->kind != Type_Tuple);
+ llirValue *ev = llir_emit_conv(proc, field_expr, et);
+ llirValue *gep = llir_emit_array_epi(proc, v, i);
+ llir_emit_store(proc, gep, ev);
+ }
+ }
+ } break;
+ case Type_Slice: {
+ if (cl->elems.count > 0) {
+ Type *elem_type = bt->Slice.elem;
+ Type *elem_ptr_type = make_type_pointer(proc->module->allocator, elem_type);
+ Type *elem_ptr_ptr_type = make_type_pointer(proc->module->allocator, elem_ptr_type);
+ llirValue *slice = llir_add_module_constant(proc->module, type, make_exact_value_compound(expr));
+ GB_ASSERT(slice->kind == llirValue_ConstantSlice);
+
+ llirValue *data = llir_emit_array_ep(proc, slice->ConstantSlice.backing_array, v_zero32);
+
+ for_array(i, cl->elems) {
+ AstNode *elem = cl->elems.e[i];
+ if (llir_is_elem_const(proc->module, elem, et)) {
+ continue;
+ }
+
+ llirValue *field_expr = llir_build_expr(proc, elem);
+ Type *t = llir_type(field_expr);
+ GB_ASSERT(t->kind != Type_Tuple);
+ llirValue *ev = llir_emit_conv(proc, field_expr, elem_type);
+ llirValue *offset = llir_emit_ptr_offset(proc, data, llir_make_const_int(proc->module->allocator, i));
+ llir_emit_store(proc, offset, ev);
+ }
+
+ llirValue *gep0 = llir_emit_struct_ep(proc, v, 0);
+ llirValue *gep1 = llir_emit_struct_ep(proc, v, 1);
+ llirValue *gep2 = llir_emit_struct_ep(proc, v, 1);
+
+ llir_emit_store(proc, gep0, data);
+ llir_emit_store(proc, gep1, llir_make_const_int(proc->module->allocator, slice->ConstantSlice.count));
+ llir_emit_store(proc, gep2, llir_make_const_int(proc->module->allocator, slice->ConstantSlice.count));
+ }
+ } break;
+ }
+
+ return llir_make_addr(v, expr);
+ case_end;
+
+
+ }
+
+ TokenPos token_pos = ast_node_token(expr).pos;
+ GB_PANIC("Unexpected address expression\n"
+ "\tAstNode: %.*s @ "
+ "%.*s(%td:%td)\n",
+ LIT(ast_node_strings[expr->kind]),
+ LIT(token_pos.file), token_pos.line, token_pos.column);
+
+
+ return llir_make_addr(NULL, NULL);
+}
+
+void llir_build_assign_op(llirProcedure *proc, llirAddr lhs, llirValue *value, TokenKind op) {
+ llirValue *old_value = llir_addr_load(proc, lhs);
+ Type *type = llir_type(old_value);
+
+ llirValue *change = value;
+ if (is_type_pointer(type) && is_type_integer(llir_type(value))) {
+ change = llir_emit_conv(proc, value, default_type(llir_type(value)));
+ } else {
+ change = llir_emit_conv(proc, value, type);
+ }
+ llirValue *new_value = llir_emit_arith(proc, op, old_value, change, type);
+ llir_addr_store(proc, lhs, new_value);
+}
+
+llirValue *llir_build_cond(llirProcedure *proc, AstNode *cond, llirBlock *true_block, llirBlock *false_block) {
+ switch (cond->kind) {
+ case_ast_node(pe, ParenExpr, cond);
+ return llir_build_cond(proc, pe->expr, true_block, false_block);
+ case_end;
+
+ case_ast_node(ue, UnaryExpr, cond);
+ if (ue->op.kind == Token_Not) {
+ return llir_build_cond(proc, ue->expr, false_block, true_block);
+ }
+ case_end;
+
+ case_ast_node(be, BinaryExpr, cond);
+ if (be->op.kind == Token_CmpAnd) {
+ llirBlock *block = llir_add_block(proc, NULL, "cmp.and");
+ llir_build_cond(proc, be->left, block, false_block);
+ proc->curr_block = block;
+ return llir_build_cond(proc, be->right, true_block, false_block);
+ } else if (be->op.kind == Token_CmpOr) {
+ llirBlock *block = llir_add_block(proc, NULL, "cmp.or");
+ llir_build_cond(proc, be->left, true_block, block);
+ proc->curr_block = block;
+ return llir_build_cond(proc, be->right, true_block, false_block);
+ }
+ case_end;
+ }
+
+ llirValue *v = llir_build_expr(proc, cond);
+ v = llir_emit_conv(proc, v, t_bool);
+ llir_emit_if(proc, v, true_block, false_block);
+ return v;
+}
+
+
+
+
+void llir_build_stmt_list(llirProcedure *proc, AstNodeArray stmts) {
+ for_array(i, stmts) {
+ llir_build_stmt(proc, stmts.e[i]);
+ }
+}
+
+void llir_build_stmt_internal(llirProcedure *proc, AstNode *node);
+void llir_build_stmt(llirProcedure *proc, AstNode *node) {
+ u32 prev_stmt_state_flags = proc->module->stmt_state_flags;
+
+ if (node->stmt_state_flags != 0) {
+ u32 in = node->stmt_state_flags;
+ u32 out = proc->module->stmt_state_flags;
+
+ if (in & StmtStateFlag_bounds_check) {
+ out |= StmtStateFlag_bounds_check;
+ out &= ~StmtStateFlag_no_bounds_check;
+ } else if (in & StmtStateFlag_no_bounds_check) {
+ out |= StmtStateFlag_no_bounds_check;
+ out &= ~StmtStateFlag_bounds_check;
+ }
+
+ proc->module->stmt_state_flags = out;
+ }
+
+ llir_build_stmt_internal(proc, node);
+
+ proc->module->stmt_state_flags = prev_stmt_state_flags;
+}
+
+void llir_build_when_stmt(llirProcedure *proc, AstNodeWhenStmt *ws) {
+ llirValue *cond = llir_build_expr(proc, ws->cond);
+ GB_ASSERT(cond->kind == llirValue_Constant &&
+ is_type_boolean(llir_type(cond)));
+
+ GB_ASSERT(cond->Constant.value.kind == ExactValue_Bool);
+ if (cond->Constant.value.value_bool) {
+ llir_build_stmt_list(proc, ws->body->BlockStmt.stmts);
+ } else if (ws->else_stmt) {
+ switch (ws->else_stmt->kind) {
+ case AstNode_BlockStmt:
+ llir_build_stmt_list(proc, ws->else_stmt->BlockStmt.stmts);
+ break;
+ case AstNode_WhenStmt:
+ llir_build_when_stmt(proc, &ws->else_stmt->WhenStmt);
+ break;
+ default:
+ GB_PANIC("Invalid `else` statement in `when` statement");
+ break;
+ }
+ }
+}
+
+void llir_emit_increment(llirProcedure *proc, llirValue *addr) {
+ GB_ASSERT(is_type_pointer(llir_type(addr)));
+ Type *type = type_deref(llir_type(addr));
+ llir_emit_store(proc, addr, llir_emit_arith(proc, Token_Add, llir_emit_load(proc, addr), v_one, type));
+
+}
+
+void llir_build_range_indexed(llirProcedure *proc, llirValue *expr, Type *val_type,
+ llirValue **val_, llirValue **idx_, llirBlock **loop_, llirBlock **done_) {
+ llirValue *count = NULL;
+ Type *expr_type = base_type(llir_type(expr));
+ switch (expr_type->kind) {
+ case Type_Array:
+ count = llir_make_const_int(proc->module->allocator, expr_type->Array.count);
+ break;
+ case Type_Slice:
+ count = llir_slice_len(proc, expr);
+ break;
+ default:
+ GB_PANIC("Cannot do range_indexed of %s", type_to_string(expr_type));
+ break;
+ }
+
+ llirValue *val = NULL;
+ llirValue *idx = NULL;
+ llirBlock *loop = NULL;
+ llirBlock *done = NULL;
+ llirBlock *body = NULL;
+
+ llirValue *index = llir_add_local_generated(proc, t_int);
+ llir_emit_store(proc, index, llir_make_const_int(proc->module->allocator, -1));
+
+ loop = llir_add_block(proc, NULL, "for.index.loop");
+ llir_emit_jump(proc, loop);
+ proc->curr_block = loop;
+
+ llirValue *incr = llir_emit_arith(proc, Token_Add, llir_emit_load(proc, index), v_one, t_int);
+ llir_emit_store(proc, index, incr);
+
+ body = llir_add_block(proc, NULL, "for.index.body");
+ done = llir_add_block(proc, NULL, "for.index.done");
+ llirValue *cond = llir_emit_comp(proc, Token_Lt, incr, count);
+ llir_emit_if(proc, cond, body, done);
+ proc->curr_block = body;
+
+ idx = llir_emit_load(proc, index);
+ if (val_type != NULL) {
+ switch (expr_type->kind) {
+ case Type_Array: {
+ val = llir_emit_load(proc, llir_emit_array_ep(proc, expr, idx));
+ } break;
+ case Type_Slice: {
+ llirValue *elem = llir_slice_elem(proc, expr);
+ val = llir_emit_load(proc, llir_emit_ptr_offset(proc, elem, idx));
+ } break;
+ default:
+ GB_PANIC("Cannot do range_indexed of %s", type_to_string(expr_type));
+ break;
+ }
+ }
+
+ if (val_) *val_ = val;
+ if (idx_) *idx_ = idx;
+ if (loop_) *loop_ = loop;
+ if (done_) *done_ = done;
+}
+
+
+void llir_build_range_string(llirProcedure *proc, llirValue *expr, Type *val_type,
+ llirValue **val_, llirValue **idx_, llirBlock **loop_, llirBlock **done_) {
+ llirValue *count = v_zero;
+ Type *expr_type = base_type(llir_type(expr));
+ switch (expr_type->kind) {
+ case Type_Basic:
+ count = llir_string_len(proc, expr);
+ break;
+ default:
+ GB_PANIC("Cannot do range_string of %s", type_to_string(expr_type));
+ break;
+ }
+
+ llirValue *val = NULL;
+ llirValue *idx = NULL;
+ llirBlock *loop = NULL;
+ llirBlock *done = NULL;
+ llirBlock *body = NULL;
+
+ llirValue *index = llir_add_local_generated(proc, t_int);
+ llir_emit_store(proc, index, v_zero);
+
+ llirValue *offset_ = llir_add_local_generated(proc, t_int);
+ llir_emit_store(proc, index, v_zero);
+
+ loop = llir_add_block(proc, NULL, "for.string.loop");
+ llir_emit_jump(proc, loop);
+ proc->curr_block = loop;
+
+
+
+ body = llir_add_block(proc, NULL, "for.string.body");
+ done = llir_add_block(proc, NULL, "for.string.done");
+
+ llirValue *offset = llir_emit_load(proc, offset_);
+
+ llirValue *cond = llir_emit_comp(proc, Token_Lt, offset, count);
+ llir_emit_if(proc, cond, body, done);
+ proc->curr_block = body;
+
+
+ llirValue *str_elem = llir_emit_ptr_offset(proc, llir_string_elem(proc, expr), offset);
+ llirValue *str_len = llir_emit_arith(proc, Token_Sub, count, offset, t_int);
+ llirValue **args = gb_alloc_array(proc->module->allocator, llirValue *, 1);
+ args[0] = llir_emit_string(proc, str_elem, str_len);
+ llirValue *rune_and_len = llir_emit_global_call(proc, "__string_decode_rune", args, 1);
+ llirValue *len = llir_emit_struct_ev(proc, rune_and_len, 1);
+ llir_emit_store(proc, offset_, llir_emit_arith(proc, Token_Add, offset, len, t_int));
+
+
+ idx = llir_emit_load(proc, index);
+ if (val_type != NULL) {
+ val = llir_emit_struct_ev(proc, rune_and_len, 0);
+ }
+ llir_emit_increment(proc, index);
+
+ if (val_) *val_ = val;
+ if (idx_) *idx_ = idx;
+ if (loop_) *loop_ = loop;
+ if (done_) *done_ = done;
+}
+
+void llir_build_range_interval(llirProcedure *proc, AstNodeIntervalExpr *node, Type *val_type,
+ llirValue **val_, llirValue **idx_, llirBlock **loop_, llirBlock **done_) {
+ // TODO(bill): How should the behaviour work for lower and upper bounds checking for iteration?
+ // If `lower` is changed, should `val` do so or is that not typical behaviour?
+
+ llirValue *lower = llir_build_expr(proc, node->left);
+ llirValue *upper = NULL;
+
+ llirValue *val = NULL;
+ llirValue *idx = NULL;
+ llirBlock *loop = NULL;
+ llirBlock *done = NULL;
+ llirBlock *body = NULL;
+
+ if (val_type == NULL) {
+ val_type = llir_type(lower);
+ }
+ llirValue *value = llir_add_local_generated(proc, val_type);
+ llir_emit_store(proc, value, lower);
+
+ llirValue *index = llir_add_local_generated(proc, t_int);
+ llir_emit_store(proc, index, llir_make_const_int(proc->module->allocator, 0));
+
+ loop = llir_add_block(proc, NULL, "for.interval.loop");
+ llir_emit_jump(proc, loop);
+ proc->curr_block = loop;
+
+ body = llir_add_block(proc, NULL, "for.interval.body");
+ done = llir_add_block(proc, NULL, "for.interval.done");
+
+ upper = llir_build_expr(proc, node->right);
+
+ llirValue *cond = llir_emit_comp(proc, Token_Lt, llir_emit_load(proc, value), upper);
+ llir_emit_if(proc, cond, body, done);
+ proc->curr_block = body;
+
+ if (value != NULL) {
+ val = llir_emit_load(proc, value);
+ }
+ idx = llir_emit_load(proc, index);
+
+ llir_emit_increment(proc, value);
+ llir_emit_increment(proc, index);
+
+ if (val_) *val_ = val;
+ if (idx_) *idx_ = idx;
+ if (loop_) *loop_ = loop;
+ if (done_) *done_ = done;
+}
+
+
+void llir_build_stmt_internal(llirProcedure *proc, AstNode *node) {
+ switch (node->kind) {
+ case_ast_node(bs, EmptyStmt, node);
+ case_end;
+
+ case_ast_node(us, UsingStmt, node);
+ AstNode *decl = unparen_expr(us->node);
+ if (decl->kind == AstNode_GenericDecl) {
+ llir_build_stmt(proc, decl);
+ }
+ case_end;
+
+ case_ast_node(ws, WhenStmt, node);
+ llir_build_when_stmt(proc, ws);
+ case_end;
+
+ case_ast_node(vd, ValueDecl, node);
+ if (vd->is_var) {
+ llirModule *m = proc->module;
+ gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&m->tmp_arena);
+
+ if (vd->values.count == 0) { // declared and zero-initialized
+ for_array(i, vd->names) {
+ AstNode *name = vd->names.e[i];
+ if (!llir_is_blank_ident(name)) {
+ llir_add_local_for_identifier(proc, name, true);
+ }
+ }
+ } else { // Tuple(s)
+ Array(llirAddr) lvals;
+ llirValueArray inits;
+ array_init_reserve(&lvals, m->tmp_allocator, vd->names.count);
+ array_init_reserve(&inits, m->tmp_allocator, vd->names.count);
+
+ for_array(i, vd->names) {
+ AstNode *name = vd->names.e[i];
+ llirAddr lval = llir_make_addr(NULL, NULL);
+ if (!llir_is_blank_ident(name)) {
+ llir_add_local_for_identifier(proc, name, false);
+ lval = llir_build_addr(proc, name);
+ }
+
+ array_add(&lvals, lval);
+ }
+
+ for_array(i, vd->values) {
+ llirValue *init = llir_build_expr(proc, vd->values.e[i]);
+ Type *t = llir_type(init);
+ if (t->kind == Type_Tuple) {
+ for (isize i = 0; i < t->Tuple.variable_count; i++) {
+ Entity *e = t->Tuple.variables[i];
+ llirValue *v = llir_emit_struct_ev(proc, init, i);
+ array_add(&inits, v);
+ }
+ } else {
+ array_add(&inits, init);
+ }
+ }
+
+
+ for_array(i, inits) {
+ if (lvals.e[i].addr == NULL) {
+ continue;
+ }
+ llirValue *v = llir_emit_conv(proc, inits.e[i], llir_addr_type(lvals.e[i]));
+ llir_addr_store(proc, lvals.e[i], v);
+ }
+ }
+
+ gb_temp_arena_memory_end(tmp);
+ } else {
+ for_array(i, vd->names) {
+ AstNode *ident = vd->names.e[i];
+ GB_ASSERT(ident->kind == AstNode_Ident);
+ Entity *e = entity_of_ident(proc->module->info, ident);
+ GB_ASSERT(e != NULL);
+ switch (e->kind) {
+ case Entity_TypeName: {
+ // NOTE(bill): Generate a new name
+ // parent_proc.name-guid
+ String ts_name = e->token.string;
+ isize name_len = proc->name.len + 1 + ts_name.len + 1 + 10 + 1;
+ u8 *name_text = gb_alloc_array(proc->module->allocator, u8, name_len);
+ i32 guid = cast(i32)proc->module->members.entries.count;
+ name_len = gb_snprintf(cast(char *)name_text, name_len, "%.*s.%.*s-%d", LIT(proc->name), LIT(ts_name), guid);
+ String name = make_string(name_text, name_len-1);
+
+ llirValue *value = llir_make_value_type_name(proc->module->allocator,
+ name, e->type);
+ map_string_set(&proc->module->type_names, hash_pointer(e->type), name);
+ llir_gen_global_type_name(proc->module, e, name);
+ } break;
+ case Entity_Procedure: {
+ DeclInfo **decl_info = map_decl_info_get(&proc->module->info->entities, hash_pointer(e));
+ GB_ASSERT(decl_info != NULL);
+ DeclInfo *dl = *decl_info;
+ ast_node(pd, ProcLit, dl->proc_decl);
+ if (pd->body != NULL) {
+ CheckerInfo *info = proc->module->info;
+
+ if (map_entity_get(&proc->module->min_dep_map, hash_pointer(e)) == NULL) {
+ // NOTE(bill): Nothing depends upon it so doesn't need to be built
+ break;
+ }
+
+ // NOTE(bill): Generate a new name
+ // parent.name-guid
+ String original_name = e->token.string;
+ String pd_name = original_name;
+ if (pd->link_name.len > 0) {
+ pd_name = pd->link_name;
+ }
+
+ isize name_len = proc->name.len + 1 + pd_name.len + 1 + 10 + 1;
+ u8 *name_text = gb_alloc_array(proc->module->allocator, u8, name_len);
+ i32 guid = cast(i32)proc->children.count;
+ name_len = gb_snprintf(cast(char *)name_text, name_len, "%.*s.%.*s-%d", LIT(proc->name), LIT(pd_name), guid);
+ String name = make_string(name_text, name_len-1);
+
+
+ llirValue *value = llir_make_value_procedure(proc->module->allocator,
+ proc->module, e, e->type, pd->type, pd->body, name);
+
+ value->Proc.tags = pd->tags;
+ value->Proc.parent = proc;
+
+ llir_module_add_value(proc->module, e, value);
+ array_add(&proc->children, &value->Proc);
+ array_add(&proc->module->procs_to_generate, value);
+ } else {
+ CheckerInfo *info = proc->module->info;
+
+ // FFI - Foreign function interace
+ String original_name = e->token.string;
+ String name = original_name;
+ if (pd->foreign_name.len > 0) {
+ name = pd->foreign_name;
+ }
+
+ llirValue *value = llir_make_value_procedure(proc->module->allocator,
+ proc->module, e, e->type, pd->type, pd->body, name);
+
+ value->Proc.tags = pd->tags;
+
+ llir_module_add_value(proc->module, e, value);
+ llir_build_proc(value, proc);
+
+ if (value->Proc.tags & ProcTag_foreign) {
+ HashKey key = hash_string(name);
+ llirValue **prev_value = map_llir_value_get(&proc->module->members, key);
+ if (prev_value == NULL) {
+ // NOTE(bill): Don't do mutliple declarations in the IR
+ map_llir_value_set(&proc->module->members, key, value);
+ }
+ } else {
+ array_add(&proc->children, &value->Proc);
+ }
+ }
+ } break;
+ }
+ }
+ }
+ case_end;
+
+ case_ast_node(as, AssignStmt, node);
+ llir_emit_comment(proc, str_lit("AssignStmt"));
+
+ llirModule *m = proc->module;
+ gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&m->tmp_arena);
+
+ switch (as->op.kind) {
+ case Token_Eq: {
+ Array(llirAddr) lvals;
+ array_init(&lvals, m->tmp_allocator);
+
+ for_array(i, as->lhs) {
+ AstNode *lhs = as->lhs.e[i];
+ llirAddr lval = {0};
+ if (!llir_is_blank_ident(lhs)) {
+ lval = llir_build_addr(proc, lhs);
+ }
+ array_add(&lvals, lval);
+ }
+
+ if (as->lhs.count == as->rhs.count) {
+ if (as->lhs.count == 1) {
+ AstNode *rhs = as->rhs.e[0];
+ llirValue *init = llir_build_expr(proc, rhs);
+ llir_addr_store(proc, lvals.e[0], init);
+ } else {
+ llirValueArray inits;
+ array_init_reserve(&inits, m->tmp_allocator, lvals.count);
+
+ for_array(i, as->rhs) {
+ llirValue *init = llir_build_expr(proc, as->rhs.e[i]);
+ array_add(&inits, init);
+ }
+
+ for_array(i, inits) {
+ llir_addr_store(proc, lvals.e[i], inits.e[i]);
+ }
+ }
+ } else {
+ llirValueArray inits;
+ array_init_reserve(&inits, m->tmp_allocator, lvals.count);
+
+ for_array(i, as->rhs) {
+ llirValue *init = llir_build_expr(proc, as->rhs.e[i]);
+ Type *t = llir_type(init);
+ // TODO(bill): refactor for code reuse as this is repeated a bit
+ if (t->kind == Type_Tuple) {
+ for (isize i = 0; i < t->Tuple.variable_count; i++) {
+ Entity *e = t->Tuple.variables[i];
+ llirValue *v = llir_emit_struct_ev(proc, init, i);
+ array_add(&inits, v);
+ }
+ } else {
+ array_add(&inits, init);
+ }
+ }
+
+ for_array(i, inits) {
+ llir_addr_store(proc, lvals.e[i], inits.e[i]);
+ }
+ }
+
+ } break;
+
+ default: {
+ // NOTE(bill): Only 1 += 1 is allowed, no tuples
+ // +=, -=, etc
+ i32 op = cast(i32)as->op.kind;
+ op += Token_Add - Token_AddEq; // Convert += to +
+ llirAddr lhs = llir_build_addr(proc, as->lhs.e[0]);
+ llirValue *value = llir_build_expr(proc, as->rhs.e[0]);
+ llir_build_assign_op(proc, lhs, value, cast(TokenKind)op);
+ } break;
+ }
+
+ gb_temp_arena_memory_end(tmp);
+ case_end;
+
+ case_ast_node(es, ExprStmt, node);
+ // NOTE(bill): No need to use return value
+ llir_build_expr(proc, es->expr);
+ case_end;
+
+ case_ast_node(bs, BlockStmt, node);
+ llir_open_scope(proc);
+ llir_build_stmt_list(proc, bs->stmts);
+ llir_close_scope(proc, llirDeferExit_Default, NULL);
+ case_end;
+
+ case_ast_node(ds, DeferStmt, node);
+ llir_emit_comment(proc, str_lit("DeferStmt"));
+ isize scope_index = proc->scope_index;
+ if (ds->stmt->kind == AstNode_BlockStmt) {
+ scope_index--;
+ }
+ llir_add_defer_node(proc, scope_index, ds->stmt);
+ case_end;
+
+ case_ast_node(rs, ReturnStmt, node);
+ llir_emit_comment(proc, str_lit("ReturnStmt"));
+ llirValue *v = NULL;
+ TypeTuple *return_type_tuple = &proc->type->Proc.results->Tuple;
+ isize return_count = proc->type->Proc.result_count;
+ if (return_count == 0) {
+ // No return values
+ } else if (return_count == 1) {
+ Entity *e = return_type_tuple->variables[0];
+ v = llir_emit_conv(proc, llir_build_expr(proc, rs->results.e[0]), e->type);
+ } else {
+ gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&proc->module->tmp_arena);
+
+ llirValueArray results;
+ array_init_reserve(&results, proc->module->tmp_allocator, return_count);
+
+ for_array(res_index, rs->results) {
+ llirValue *res = llir_build_expr(proc, rs->results.e[res_index]);
+ Type *t = llir_type(res);
+ if (t->kind == Type_Tuple) {
+ for (isize i = 0; i < t->Tuple.variable_count; i++) {
+ Entity *e = t->Tuple.variables[i];
+ llirValue *v = llir_emit_struct_ev(proc, res, i);
+ array_add(&results, v);
+ }
+ } else {
+ array_add(&results, res);
+ }
+ }
+
+ Type *ret_type = proc->type->Proc.results;
+ v = llir_add_local_generated(proc, ret_type);
+ for_array(i, results) {
+ Entity *e = return_type_tuple->variables[i];
+ llirValue *res = llir_emit_conv(proc, results.e[i], e->type);
+ llirValue *field = llir_emit_struct_ep(proc, v, i);
+ llir_emit_store(proc, field, res);
+ }
+
+ v = llir_emit_load(proc, v);
+
+ gb_temp_arena_memory_end(tmp);
+ }
+ llir_emit_return(proc, v);
+
+ case_end;
+
+ case_ast_node(is, IfStmt, node);
+ llir_emit_comment(proc, str_lit("IfStmt"));
+ if (is->init != NULL) {
+ llirBlock *init = llir_add_block(proc, node, "if.init");
+ llir_emit_jump(proc, init);
+ proc->curr_block = init;
+ llir_build_stmt(proc, is->init);
+ }
+ llirBlock *then = llir_add_block(proc, node, "if.then");
+ llirBlock *done = llir_add_block(proc, node, "if.done"); // NOTE(bill): Append later
+ llirBlock *else_ = done;
+ if (is->else_stmt != NULL) {
+ else_ = llir_add_block(proc, is->else_stmt, "if.else");
+ }
+
+ llir_build_cond(proc, is->cond, then, else_);
+ proc->curr_block = then;
+
+ llir_open_scope(proc);
+ llir_build_stmt(proc, is->body);
+ llir_close_scope(proc, llirDeferExit_Default, NULL);
+
+ llir_emit_jump(proc, done);
+
+ if (is->else_stmt != NULL) {
+ proc->curr_block = else_;
+
+ llir_open_scope(proc);
+ llir_build_stmt(proc, is->else_stmt);
+ llir_close_scope(proc, llirDeferExit_Default, NULL);
+
+ llir_emit_jump(proc, done);
+ }
+ proc->curr_block = done;
+ case_end;
+
+ case_ast_node(ws, WhileStmt, node);
+ llir_emit_comment(proc, str_lit("WhileStmt"));
+ if (ws->init != NULL) {
+ llirBlock *init = llir_add_block(proc, node, "while.init");
+ llir_emit_jump(proc, init);
+ proc->curr_block = init;
+ llir_build_stmt(proc, ws->init);
+ }
+ llirBlock *body = llir_add_block(proc, node, "while.body");
+ llirBlock *done = llir_add_block(proc, node, "while.done"); // NOTE(bill): Append later
+
+ llirBlock *loop = body;
+
+ if (ws->cond != NULL) {
+ loop = llir_add_block(proc, node, "while.loop");
+ }
+ llir_emit_jump(proc, loop);
+ proc->curr_block = loop;
+ if (loop != body) {
+ llir_build_cond(proc, ws->cond, body, done);
+ proc->curr_block = body;
+ }
+
+ llir_push_target_list(proc, done, loop, NULL);
+
+ llir_open_scope(proc);
+ llir_build_stmt(proc, ws->body);
+ llir_close_scope(proc, llirDeferExit_Default, NULL);
+
+ llir_pop_target_list(proc);
+ llir_emit_jump(proc, loop);
+
+ proc->curr_block = done;
+ case_end;
+
+
+ case_ast_node(rs, ForStmt, node);
+ llir_emit_comment(proc, str_lit("ForStmt"));
+
+ Type *val_type = NULL;
+ Type *idx_type = NULL;
+ if (rs->value != NULL && !llir_is_blank_ident(rs->value)) {
+ val_type = type_of_expr(proc->module->info, rs->value);
+ }
+ if (rs->index != NULL && !llir_is_blank_ident(rs->index)) {
+ idx_type = type_of_expr(proc->module->info, rs->index);
+ }
+
+ if (val_type != NULL) {
+ llir_add_local_for_identifier(proc, rs->value, true);
+ }
+ if (idx_type != NULL) {
+ llir_add_local_for_identifier(proc, rs->index, true);
+ }
+
+ llirValue *val = NULL;
+ llirValue *index = NULL;
+ llirBlock *loop = NULL;
+ llirBlock *done = NULL;
+
+ if (rs->expr->kind == AstNode_IntervalExpr) {
+ llir_build_range_interval(proc, &rs->expr->IntervalExpr, val_type, &val, &index, &loop, &done);
+ } else {
+ Type *expr_type = type_of_expr(proc->module->info, rs->expr);
+ Type *et = base_type(type_deref(expr_type));
+ bool deref = is_type_pointer(expr_type);
+ switch (et->kind) {
+ case Type_Array: {
+ llirValue *array = llir_build_addr(proc, rs->expr).addr;
+ if (deref) {
+ array = llir_emit_load(proc, array);
+ }
+ llir_build_range_indexed(proc, array, val_type, &val, &index, &loop, &done);
+ } break;
+ case Type_Slice: {
+ llirValue *slice = llir_build_expr(proc, rs->expr);
+ if (deref) {
+ slice = llir_emit_load(proc, slice);
+ }
+ llir_build_range_indexed(proc, slice, val_type, &val, &index, &loop, &done);
+ } break;
+ case Type_Basic: {
+ llirValue *string = llir_build_expr(proc, rs->expr);
+ if (deref) {
+ string = llir_emit_load(proc, string);
+ }
+ if (is_type_untyped(expr_type)) {
+ llirValue *s = llir_add_local_generated(proc, t_string);
+ llir_emit_store(proc, s, string);
+ string = llir_emit_load(proc, s);
+ }
+ llir_build_range_string(proc, string, val_type, &val, &index, &loop, &done);
+ } break;
+ default:
+ GB_PANIC("Cannot range over %s", type_to_string(expr_type));
+ break;
+ }
+ }
+
+ llirAddr val_addr = {0};
+ llirAddr idx_addr = {0};
+ if (val_type != NULL) {
+ val_addr = llir_build_addr(proc, rs->value);
+ }
+ if (idx_type != NULL) {
+ idx_addr = llir_build_addr(proc, rs->index);
+ }
+ if (val_type != NULL) {
+ llir_addr_store(proc, val_addr, val);
+ }
+ if (idx_type != NULL) {
+ llir_addr_store(proc, idx_addr, index);
+ }
+
+ llir_push_target_list(proc, done, loop, NULL);
+
+ llir_open_scope(proc);
+ llir_build_stmt(proc, rs->body);
+ llir_close_scope(proc, llirDeferExit_Default, NULL);
+
+ llir_pop_target_list(proc);
+ llir_emit_jump(proc, loop);
+ proc->curr_block = done;
+ case_end;
+
+ case_ast_node(ms, MatchStmt, node);
+ llir_emit_comment(proc, str_lit("MatchStmt"));
+ if (ms->init != NULL) {
+ llir_build_stmt(proc, ms->init);
+ }
+ llirValue *tag = v_true;
+ if (ms->tag != NULL) {
+ tag = llir_build_expr(proc, ms->tag);
+ }
+ llirBlock *done = llir_add_block(proc, node, "match.done"); // NOTE(bill): Append later
+
+ ast_node(body, BlockStmt, ms->body);
+
+ AstNodeArray default_stmts = {0};
+ llirBlock *default_fall = NULL;
+ llirBlock *default_block = NULL;
+
+ llirBlock *fall = NULL;
+ bool append_fall = false;
+
+ isize case_count = body->stmts.count;
+ for_array(i, body->stmts) {
+ AstNode *clause = body->stmts.e[i];
+ llirBlock *body = fall;
+
+ ast_node(cc, CaseClause, clause);
+
+ if (body == NULL) {
+ if (cc->list.count == 0) {
+ body = llir_add_block(proc, clause, "match.dflt.body");
+ } else {
+ body = llir_add_block(proc, clause, "match.case.body");
+ }
+ }
+ if (append_fall && body == fall) {
+ append_fall = false;
+ }
+
+ fall = done;
+ if (i+1 < case_count) {
+ append_fall = true;
+ fall = llir_add_block(proc, clause, "match.fall.body");
+ }
+
+ if (cc->list.count == 0) {
+ // default case
+ default_stmts = cc->stmts;
+ default_fall = fall;
+ default_block = body;
+ continue;
+ }
+
+ llirBlock *next_cond = NULL;
+ for_array(j, cc->list) {
+ AstNode *expr = cc->list.e[j];
+ next_cond = llir_add_block(proc, clause, "match.case.next");
+
+ llirValue *cond = llir_emit_comp(proc, Token_CmpEq, tag, llir_build_expr(proc, expr));
+ llir_emit_if(proc, cond, body, next_cond);
+ proc->curr_block = next_cond;
+ }
+ proc->curr_block = body;
+
+ llir_push_target_list(proc, done, NULL, fall);
+ llir_open_scope(proc);
+ llir_build_stmt_list(proc, cc->stmts);
+ llir_close_scope(proc, llirDeferExit_Default, body);
+ llir_pop_target_list(proc);
+
+ llir_emit_jump(proc, done);
+ proc->curr_block = next_cond;
+ }
+
+ if (default_block != NULL) {
+ llir_emit_jump(proc, default_block);
+ proc->curr_block = default_block;
+
+ llir_push_target_list(proc, done, NULL, default_fall);
+ llir_open_scope(proc);
+ llir_build_stmt_list(proc, default_stmts);
+ llir_close_scope(proc, llirDeferExit_Default, default_block);
+ llir_pop_target_list(proc);
+ }
+
+ llir_emit_jump(proc, done);
+ proc->curr_block = done;
+ case_end;
+
+
+ case_ast_node(ms, TypeMatchStmt, node);
+ llir_emit_comment(proc, str_lit("TypeMatchStmt"));
+ gbAllocator allocator = proc->module->allocator;
+
+ llirValue *parent = llir_build_expr(proc, ms->tag);
+ bool is_union_ptr = false;
+ bool is_any = false;
+ GB_ASSERT(check_valid_type_match_type(llir_type(parent), &is_union_ptr, &is_any));
+
+ llirValue *tag_index = NULL;
+ llirValue *union_data = NULL;
+ if (is_union_ptr) {
+ llir_emit_comment(proc, str_lit("get union's tag"));
+ tag_index = llir_emit_load(proc, llir_emit_union_tag_ptr(proc, parent));
+ union_data = llir_emit_conv(proc, parent, t_rawptr);
+ }
+
+ llirBlock *start_block = llir_add_block(proc, node, "type-match.case.first");
+ llir_emit_jump(proc, start_block);
+ proc->curr_block = start_block;
+
+ llirBlock *done = llir_add_block(proc, node, "type-match.done"); // NOTE(bill): Append later
+
+ ast_node(body, BlockStmt, ms->body);
+
+ String tag_var_name = ms->var->Ident.string;
+
+ AstNodeArray default_stmts = {0};
+ llirBlock *default_block = NULL;
+
+
+ isize case_count = body->stmts.count;
+ for_array(i, body->stmts) {
+ AstNode *clause = body->stmts.e[i];
+ ast_node(cc, CaseClause, clause);
+
+ if (cc->list.count == 0) {
+ // default case
+ default_stmts = cc->stmts;
+ default_block = llir_add_block(proc, clause, "type-match.dflt.body");
+ continue;
+ }
+
+
+ llirBlock *body = llir_add_block(proc, clause, "type-match.case.body");
+
+ Scope *scope = *map_scope_get(&proc->module->info->scopes, hash_pointer(clause));
+ Entity *tag_var_entity = current_scope_lookup_entity(scope, tag_var_name);
+ GB_ASSERT_MSG(tag_var_entity != NULL, "%.*s", LIT(tag_var_name));
+
+ llirBlock *next_cond = NULL;
+ llirValue *cond = NULL;
+
+ if (is_union_ptr) {
+ Type *bt = type_deref(tag_var_entity->type);
+ llirValue *index = NULL;
+ Type *ut = base_type(type_deref(llir_type(parent)));
+ GB_ASSERT(ut->Record.kind == TypeRecord_Union);
+ for (isize field_index = 1; field_index < ut->Record.field_count; field_index++) {
+ Entity *f = ut->Record.fields[field_index];
+ if (are_types_identical(f->type, bt)) {
+ index = llir_make_const_int(allocator, field_index);
+ break;
+ }
+ }
+ GB_ASSERT(index != NULL);
+
+ llirValue *tag_var = llir_add_local(proc, tag_var_entity);
+ llirValue *data_ptr = llir_emit_conv(proc, union_data, tag_var_entity->type);
+ llir_emit_store(proc, tag_var, data_ptr);
+
+ cond = llir_emit_comp(proc, Token_CmpEq, tag_index, index);
+ } else if (is_any) {
+ Type *type = tag_var_entity->type;
+ llirValue *any_data = llir_emit_struct_ev(proc, parent, 1);
+ llirValue *data = llir_emit_conv(proc, any_data, make_type_pointer(proc->module->allocator, type));
+ llir_module_add_value(proc->module, tag_var_entity, data);
+
+ llirValue *any_ti = llir_emit_struct_ev(proc, parent, 0);
+ llirValue *case_ti = llir_type_info(proc, type);
+ cond = llir_emit_comp(proc, Token_CmpEq, any_ti, case_ti);
+ } else {
+ GB_PANIC("Invalid type for type match statement");
+ }
+
+ next_cond = llir_add_block(proc, clause, "type-match.case.next");
+ llir_emit_if(proc, cond, body, next_cond);
+ proc->curr_block = next_cond;
+
+ proc->curr_block = body;
+
+ llir_push_target_list(proc, done, NULL, NULL);
+ llir_open_scope(proc);
+ llir_build_stmt_list(proc, cc->stmts);
+ llir_close_scope(proc, llirDeferExit_Default, body);
+ llir_pop_target_list(proc);
+
+ llir_emit_jump(proc, done);
+ proc->curr_block = next_cond;
+ }
+
+ if (default_block != NULL) {
+ llir_emit_jump(proc, default_block);
+ proc->curr_block = default_block;
+
+ llir_push_target_list(proc, done, NULL, NULL);
+ llir_open_scope(proc);
+ llir_build_stmt_list(proc, default_stmts);
+ llir_close_scope(proc, llirDeferExit_Default, default_block);
+ llir_pop_target_list(proc);
+ }
+
+ llir_emit_jump(proc, done);
+ proc->curr_block = done;
+ case_end;
+
+ case_ast_node(bs, BranchStmt, node);
+ llirBlock *block = NULL;
+ switch (bs->token.kind) {
+ case Token_break:
+ for (llirTargetList *t = proc->target_list; t != NULL && block == NULL; t = t->prev) {
+ block = t->break_;
+ }
+ break;
+ case Token_continue:
+ for (llirTargetList *t = proc->target_list; t != NULL && block == NULL; t = t->prev) {
+ block = t->continue_;
+ }
+ break;
+ case Token_fallthrough:
+ for (llirTargetList *t = proc->target_list; t != NULL && block == NULL; t = t->prev) {
+ block = t->fallthrough_;
+ }
+ break;
+ }
+ if (block != NULL) {
+ llir_emit_defer_stmts(proc, llirDeferExit_Branch, block);
+ }
+ switch (bs->token.kind) {
+ case Token_break: llir_emit_comment(proc, str_lit("break")); break;
+ case Token_continue: llir_emit_comment(proc, str_lit("continue")); break;
+ case Token_fallthrough: llir_emit_comment(proc, str_lit("fallthrough")); break;
+ }
+ llir_emit_jump(proc, block);
+ llir_emit_unreachable(proc);
+ case_end;
+
+
+
+ case_ast_node(pa, PushAllocator, node);
+ llir_emit_comment(proc, str_lit("PushAllocator"));
+ llir_open_scope(proc);
+
+ llirValue *context_ptr = llir_find_implicit_value_backing(proc, ImplicitValue_context);
+ llirValue *prev_context = llir_add_local_generated(proc, t_context);
+ llir_emit_store(proc, prev_context, llir_emit_load(proc, context_ptr));
+
+ llir_add_defer_instr(proc, proc->scope_index, llir_make_instr_store(proc, context_ptr, llir_emit_load(proc, prev_context)));
+
+ llirValue *gep = llir_emit_struct_ep(proc, context_ptr, 1);
+ llir_emit_store(proc, gep, llir_build_expr(proc, pa->expr));
+
+ llir_build_stmt(proc, pa->body);
+
+ llir_close_scope(proc, llirDeferExit_Default, NULL);
+ case_end;
+
+
+ case_ast_node(pa, PushContext, node);
+ llir_emit_comment(proc, str_lit("PushContext"));
+ llir_open_scope(proc);
+
+ llirValue *context_ptr = llir_find_implicit_value_backing(proc, ImplicitValue_context);
+ llirValue *prev_context = llir_add_local_generated(proc, t_context);
+ llir_emit_store(proc, prev_context, llir_emit_load(proc, context_ptr));
+
+ llir_add_defer_instr(proc, proc->scope_index, llir_make_instr_store(proc, context_ptr, llir_emit_load(proc, prev_context)));
+
+ llir_emit_store(proc, context_ptr, llir_build_expr(proc, pa->expr));
+
+ llir_build_stmt(proc, pa->body);
+
+ llir_close_scope(proc, llirDeferExit_Default, NULL);
+ case_end;
+
+
+ }
+}
+
+
+
+
+
+
+
+////////////////////////////////////////////////////////////////
+//
+// @Procedure
+//
+////////////////////////////////////////////////////////////////
+
+void llir_number_proc_registers(llirProcedure *proc) {
+ i32 reg_index = 0;
+ for_array(i, proc->blocks) {
+ llirBlock *b = proc->blocks.e[i];
+ b->index = i;
+ for_array(j, b->instrs) {
+ llirValue *value = b->instrs.e[j];
+ GB_ASSERT(value->kind == llirValue_Instr);
+ llirInstr *instr = &value->Instr;
+ if (llir_instr_type(instr) == NULL) { // NOTE(bill): Ignore non-returning instructions
+ continue;
+ }
+ value->index = reg_index;
+ reg_index++;
+ }
+ }
+}
+
+void llir_begin_procedure_body(llirProcedure *proc) {
+ array_add(&proc->module->procs, proc);
+
+ array_init(&proc->blocks, heap_allocator());
+ array_init(&proc->defer_stmts, heap_allocator());
+ array_init(&proc->children, heap_allocator());
+
+ proc->decl_block = llir_add_block(proc, proc->type_expr, "decls");
+ proc->entry_block = llir_add_block(proc, proc->type_expr, "entry");
+ proc->curr_block = proc->entry_block;
+
+ if (proc->type->Proc.params != NULL) {
+ TypeTuple *params = &proc->type->Proc.params->Tuple;
+ for (isize i = 0; i < params->variable_count; i++) {
+ Entity *e = params->variables[i];
+ if (!str_eq(e->token.string, str_lit("")) &&
+ !str_eq(e->token.string, str_lit("_"))) {
+ llirValue *param = llir_add_param(proc, e);
+ array_add(&proc->params, param);
+ }
+ }
+ }
+}
+
+
+void llir_end_procedure_body(llirProcedure *proc) {
+ if (proc->type->Proc.result_count == 0) {
+ llir_emit_return(proc, NULL);
+ }
+
+ if (proc->curr_block->instrs.count == 0) {
+ llir_emit_unreachable(proc);
+ }
+
+ proc->curr_block = proc->decl_block;
+ llir_emit_jump(proc, proc->entry_block);
+
+ llir_number_proc_registers(proc);
+}
+
+
+void llir_insert_code_before_proc(llirProcedure* proc, llirProcedure *parent) {
+ if (parent == NULL) {
+ if (str_eq(proc->name, str_lit("main"))) {
+ llir_emit_startup_runtime(proc);
+ }
+ }
+}
+
+void llir_build_proc(llirValue *value, llirProcedure *parent) {
+ llirProcedure *proc = &value->Proc;
+
+ proc->parent = parent;
+
+ if (proc->entity != NULL) {
+ llirModule *m = proc->module;
+ CheckerInfo *info = m->info;
+ Entity *e = proc->entity;
+ String filename = e->token.pos.file;
+ AstFile **found = map_ast_file_get(&info->files, hash_string(filename));
+ GB_ASSERT(found != NULL);
+ AstFile *f = *found;
+ llirDebugInfo *di_file = NULL;
+
+ llirDebugInfo **di_file_found = map_llir_debug_info_get(&m->debug_info, hash_pointer(f));
+ if (di_file_found) {
+ di_file = *di_file_found;
+ GB_ASSERT(di_file->kind == llirDebugInfo_File);
+ } else {
+ di_file = llir_add_debug_info_file(proc, f);
+ }
+
+ llir_add_debug_info_proc(proc, e, proc->name, di_file);
+ }
+
+ if (proc->body != NULL) {
+ u32 prev_stmt_state_flags = proc->module->stmt_state_flags;
+
+ if (proc->tags != 0) {
+ u32 in = proc->tags;
+ u32 out = proc->module->stmt_state_flags;
+ if (in & ProcTag_bounds_check) {
+ out |= StmtStateFlag_bounds_check;
+ out &= ~StmtStateFlag_no_bounds_check;
+ } else if (in & ProcTag_no_bounds_check) {
+ out |= StmtStateFlag_no_bounds_check;
+ out &= ~StmtStateFlag_bounds_check;
+ }
+ proc->module->stmt_state_flags = out;
+ }
+
+
+ llir_begin_procedure_body(proc);
+ llir_insert_code_before_proc(proc, parent);
+ llir_build_stmt(proc, proc->body);
+ llir_end_procedure_body(proc);
+
+ proc->module->stmt_state_flags = prev_stmt_state_flags;
+ }
+}
+
+
+
+
+
+
+
+////////////////////////////////////////////////////////////////
+//
+// @Module
+//
+////////////////////////////////////////////////////////////////
+
+
+
+void llir_module_add_value(llirModule *m, Entity *e, llirValue *v) {
+ map_llir_value_set(&m->values, hash_pointer(e), v);
+}
+
+void llir_init_module(llirModule *m, Checker *c, BuildContext *build_context) {
+ // TODO(bill): Determine a decent size for the arena
+ isize token_count = c->parser->total_token_count;
+ isize arena_size = 4 * token_count * gb_size_of(llirValue);
+ gb_arena_init_from_allocator(&m->arena, heap_allocator(), arena_size);
+ gb_arena_init_from_allocator(&m->tmp_arena, heap_allocator(), arena_size);
+ m->allocator = gb_arena_allocator(&m->arena);
+ m->tmp_allocator = gb_arena_allocator(&m->tmp_arena);
+ m->info = &c->info;
+ m->sizes = c->sizes;
+ m->build_context = build_context;
+
+ map_llir_value_init(&m->values, heap_allocator());
+ map_llir_value_init(&m->members, heap_allocator());
+ map_llir_debug_info_init(&m->debug_info, heap_allocator());
+ map_string_init(&m->type_names, heap_allocator());
+ array_init(&m->procs, heap_allocator());
+ array_init(&m->procs_to_generate, heap_allocator());
+
+ // Default states
+ m->stmt_state_flags = 0;
+ m->stmt_state_flags |= StmtStateFlag_bounds_check;
+
+ {
+ // Add type info data
+ {
+ String name = str_lit(LLIR_TYPE_INFO_DATA_NAME);
+ isize count = c->info.type_info_map.entries.count;
+ Entity *e = make_entity_variable(m->allocator, NULL, make_token_ident(name), make_type_array(m->allocator, t_type_info, count));
+ llirValue *g = llir_make_value_global(m->allocator, e, NULL);
+ g->Global.is_private = true;
+ llir_module_add_value(m, e, g);
+ map_llir_value_set(&m->members, hash_string(name), g);
+ }
+
+ // Type info member buffer
+ {
+ // NOTE(bill): Removes need for heap allocation by making it global memory
+ isize count = 0;
+
+ for_array(entry_index, m->info->type_info_map.entries) {
+ MapIsizeEntry *entry = &m->info->type_info_map.entries.e[entry_index];
+ Type *t = cast(Type *)cast(uintptr)entry->key.key;
+
+ switch (t->kind) {
+ case Type_Record:
+ switch (t->Record.kind) {
+ case TypeRecord_Struct:
+ case TypeRecord_RawUnion:
+ count += t->Record.field_count;
+ }
+ break;
+ case Type_Tuple:
+ count += t->Tuple.variable_count;
+ break;
+ }
+ }
+
+ String name = str_lit(LLIR_TYPE_INFO_DATA_MEMBER_NAME);
+ Entity *e = make_entity_variable(m->allocator, NULL, make_token_ident(name),
+ make_type_array(m->allocator, t_type_info_member, count));
+ llirValue *g = llir_make_value_global(m->allocator, e, NULL);
+ llir_module_add_value(m, e, g);
+ map_llir_value_set(&m->members, hash_string(name), g);
+ }
+ }
+
+ {
+ llirDebugInfo *di = llir_alloc_debug_info(m->allocator, llirDebugInfo_CompileUnit);
+ di->CompileUnit.file = m->info->files.entries.e[0].value; // Zeroth is the init file
+ di->CompileUnit.producer = str_lit("odin");
+
+ map_llir_debug_info_set(&m->debug_info, hash_pointer(m), di);
+ }
+}
+
+void llir_destroy_module(llirModule *m) {
+ map_llir_value_destroy(&m->values);
+ map_llir_value_destroy(&m->members);
+ map_string_destroy(&m->type_names);
+ map_llir_debug_info_destroy(&m->debug_info);
+ array_free(&m->procs_to_generate);
+ gb_arena_free(&m->arena);
+}
+
+
+
+////////////////////////////////////////////////////////////////
+//
+// @Code Generation
+//
+////////////////////////////////////////////////////////////////
+
+
+bool llir_gen_init(llirGen *s, Checker *c, BuildContext *build_context) {
+ if (global_error_collector.count != 0) {
+ return false;
+ }
+
+ isize tc = c->parser->total_token_count;
+ if (tc < 2) {
+ return false;
+ }
+
+ llir_init_module(&s->module, c, build_context);
+ s->module.generate_debug_info = false;
+
+ // TODO(bill): generate appropriate output name
+ int pos = cast(int)string_extension_position(c->parser->init_fullpath);
+ gbFileError err = gb_file_create(&s->output_file, gb_bprintf("%.*s.ll", pos, c->parser->init_fullpath.text));
+ if (err != gbFileError_None) {
+ return false;
+ }
+
+ return true;
+}
+
+void llir_gen_destroy(llirGen *s) {
+ llir_destroy_module(&s->module);
+ gb_file_close(&s->output_file);
+}
+
+String llir_mangle_name(llirGen *s, String path, String name) {
+ // NOTE(bill): prefix names not in the init scope
+ // TODO(bill): make robust and not just rely on the file's name
+
+ llirModule *m = &s->module;
+ CheckerInfo *info = m->info;
+ gbAllocator a = m->allocator;
+ AstFile *file = *map_ast_file_get(&info->files, hash_string(path));
+
+ char *str = gb_alloc_array(a, char, path.len+1);
+ gb_memmove(str, path.text, path.len);
+ str[path.len] = 0;
+ for (isize i = 0; i < path.len; i++) {
+ if (str[i] == '\\') {
+ str[i] = '/';
+ }
+ }
+
+ char const *base = gb_path_base_name(str);
+ char const *ext = gb_path_extension(base);
+ isize base_len = ext-1-base;
+
+ isize max_len = base_len + 1 + 10 + 1 + name.len;
+ u8 *new_name = gb_alloc_array(a, u8, max_len);
+ isize new_name_len = gb_snprintf(
+ cast(char *)new_name, max_len,
+ "%.*s-%u.%.*s",
+ cast(int)base_len, base,
+ file->id,
+ LIT(name));
+
+ return make_string(new_name, new_name_len-1);
+}
+
+llirValue *llir_get_type_info_ptr(llirProcedure *proc, llirValue *type_info_data, Type *type) {
+ i32 index = cast(i32)llir_type_info_index(proc->module->info, type);
+ // gb_printf_err("%d %s\n", index, type_to_string(type));
+ llirValue *ptr = llir_emit_array_epi(proc, type_info_data, index);
+ return llir_emit_bitcast(proc, ptr, t_type_info_ptr);
+}
+
+llirValue *llir_type_info_member_offset(llirProcedure *proc, llirValue *data, isize count, i32 *index) {
+ llirValue *offset = llir_emit_array_epi(proc, data, *index);
+ *index += count;
+ return offset;
+}
+
+void llir_gen_tree(llirGen *s) {
+ llirModule *m = &s->module;
+ CheckerInfo *info = m->info;
+ gbAllocator a = m->allocator;
+
+ if (v_zero == NULL) {
+ v_zero = llir_make_const_int (m->allocator, 0);
+ v_one = llir_make_const_int (m->allocator, 1);
+ v_zero32 = llir_make_const_i32 (m->allocator, 0);
+ v_one32 = llir_make_const_i32 (m->allocator, 1);
+ v_two32 = llir_make_const_i32 (m->allocator, 2);
+ v_false = llir_make_const_bool(m->allocator, false);
+ v_true = llir_make_const_bool(m->allocator, true);
+ }
+
+ isize global_variable_max_count = 0;
+ Entity *entry_point = NULL;
+ bool has_dll_main = false;
+ bool has_win_main = false;
+
+ for_array(i, info->entities.entries) {
+ MapDeclInfoEntry *entry = &info->entities.entries.e[i];
+ Entity *e = cast(Entity *)cast(uintptr)entry->key.key;
+ String name = e->token.string;
+ if (e->kind == Entity_Variable) {
+ global_variable_max_count++;
+ } else if (e->kind == Entity_Procedure && !e->scope->is_global) {
+ if (e->scope->is_init && str_eq(name, str_lit("main"))) {
+ entry_point = e;
+ }
+ if ((e->Procedure.tags & ProcTag_export) != 0 ||
+ (e->Procedure.link_name.len > 0) ||
+ (e->scope->is_file && e->Procedure.link_name.len > 0)) {
+ if (!has_dll_main && str_eq(name, str_lit("DllMain"))) {
+ has_dll_main = true;
+ } else if (!has_win_main && str_eq(name, str_lit("WinMain"))) {
+ has_win_main = true;
+ }
+ }
+ }
+ }
+
+ typedef struct llirGlobalVariable {
+ llirValue *var, *init;
+ DeclInfo *decl;
+ } llirGlobalVariable;
+ Array(llirGlobalVariable) global_variables;
+ array_init_reserve(&global_variables, m->tmp_allocator, global_variable_max_count);
+
+ m->entry_point_entity = entry_point;
+ m->min_dep_map = generate_minimum_dependency_map(info, entry_point);
+
+ for_array(i, info->entities.entries) {
+ MapDeclInfoEntry *entry = &info->entities.entries.e[i];
+ Entity *e = cast(Entity *)entry->key.ptr;
+ String name = e->token.string;
+ DeclInfo *decl = entry->value;
+ Scope *scope = e->scope;
+
+ if (!scope->is_file) {
+ continue;
+ }
+
+ if (map_entity_get(&m->min_dep_map, hash_pointer(e)) == NULL) {
+ // NOTE(bill): Nothing depends upon it so doesn't need to be built
+ continue;
+ }
+
+ if (!scope->is_global) {
+ if (e->kind == Entity_Procedure && (e->Procedure.tags & ProcTag_export) != 0) {
+ } else if (e->kind == Entity_Procedure && e->Procedure.link_name.len > 0) {
+ } else if (scope->is_init && e->kind == Entity_Procedure && str_eq(name, str_lit("main"))) {
+ } else {
+ name = llir_mangle_name(s, e->token.pos.file, name);
+ }
+ }
+
+
+ switch (e->kind) {
+ case Entity_TypeName:
+ GB_ASSERT(e->type->kind == Type_Named);
+ map_string_set(&m->type_names, hash_pointer(e->type), name);
+ llir_gen_global_type_name(m, e, name);
+ break;
+
+ case Entity_Variable: {
+ llirValue *g = llir_make_value_global(a, e, NULL);
+ if (decl->var_decl_tags & VarDeclTag_thread_local) {
+ g->Global.is_thread_local = true;
+ }
+ llirGlobalVariable var = {0};
+ var.var = g;
+ var.decl = decl;
+
+ if (decl->init_expr != NULL) {
+ TypeAndValue *tav = map_tav_get(&info->types, hash_pointer(decl->init_expr));
+ if (tav != NULL) {
+ if (tav->value.kind != ExactValue_Invalid) {
+ ExactValue v = tav->value;
+ // if (v.kind != ExactValue_String) {
+ g->Global.value = llir_add_module_constant(m, tav->type, v);
+ // }
+ }
+ }
+ }
+
+ if (g->Global.value == NULL) {
+ array_add(&global_variables, var);
+ }
+
+ llir_module_add_value(m, e, g);
+ map_llir_value_set(&m->members, hash_string(name), g);
+ } break;
+
+ case Entity_Procedure: {
+ ast_node(pd, ProcLit, decl->proc_decl);
+ String original_name = name;
+ AstNode *body = pd->body;
+ if (e->Procedure.is_foreign) {
+ name = e->token.string; // NOTE(bill): Don't use the mangled name
+ }
+ if (pd->foreign_name.len > 0) {
+ name = pd->foreign_name;
+ } else if (pd->link_name.len > 0) {
+ name = pd->link_name;
+ }
+
+ llirValue *p = llir_make_value_procedure(a, m, e, e->type, decl->type_expr, body, name);
+ p->Proc.tags = pd->tags;
+
+ llir_module_add_value(m, e, p);
+ HashKey hash_name = hash_string(name);
+ if (map_llir_value_get(&m->members, hash_name) == NULL) {
+ map_llir_value_set(&m->members, hash_name, p);
+ }
+ } break;
+ }
+ }
+
+ for_array(i, m->members.entries) {
+ MapSsaValueEntry *entry = &m->members.entries.e[i];
+ llirValue *v = entry->value;
+ if (v->kind == llirValue_Proc) {
+ llir_build_proc(v, NULL);
+ }
+ }
+
+ llirDebugInfo *compile_unit = m->debug_info.entries.e[0].value;
+ GB_ASSERT(compile_unit->kind == llirDebugInfo_CompileUnit);
+ llirDebugInfo *all_procs = llir_alloc_debug_info(m->allocator, llirDebugInfo_AllProcs);
+
+ isize all_proc_max_count = 0;
+ for_array(i, m->debug_info.entries) {
+ MapSsaDebugInfoEntry *entry = &m->debug_info.entries.e[i];
+ llirDebugInfo *di = entry->value;
+ di->id = i;
+ if (di->kind == llirDebugInfo_Proc) {
+ all_proc_max_count++;
+ }
+ }
+
+ array_init_reserve(&all_procs->AllProcs.procs, m->allocator, all_proc_max_count);
+ map_llir_debug_info_set(&m->debug_info, hash_pointer(all_procs), all_procs); // NOTE(bill): This doesn't need to be mapped
+ compile_unit->CompileUnit.all_procs = all_procs;
+
+
+ for_array(i, m->debug_info.entries) {
+ MapSsaDebugInfoEntry *entry = &m->debug_info.entries.e[i];
+ llirDebugInfo *di = entry->value;
+ di->id = i;
+ if (di->kind == llirDebugInfo_Proc) {
+ array_add(&all_procs->AllProcs.procs, di);
+ }
+ }
+
+#if defined(GB_SYSTEM_WINDOWS)
+ if (m->build_context->is_dll && !has_dll_main) {
+ // DllMain :: proc(inst: rawptr, reason: u32, reserved: rawptr) -> i32
+ String name = str_lit("DllMain");
+ Type *proc_params = make_type_tuple(a);
+ Type *proc_results = make_type_tuple(a);
+
+ Scope *proc_scope = gb_alloc_item(a, Scope);
+
+ proc_params->Tuple.variables = gb_alloc_array(a, Entity *, 3);
+ proc_params->Tuple.variable_count = 3;
+
+ proc_results->Tuple.variables = gb_alloc_array(a, Entity *, 1);
+ proc_results->Tuple.variable_count = 1;
+
+ proc_params->Tuple.variables[0] = make_entity_param(a, proc_scope, blank_token, t_rawptr, false);
+ proc_params->Tuple.variables[1] = make_entity_param(a, proc_scope, make_token_ident(str_lit("reason")), t_i32, false);
+ proc_params->Tuple.variables[2] = make_entity_param(a, proc_scope, blank_token, t_rawptr, false);
+
+ proc_results->Tuple.variables[0] = make_entity_param(a, proc_scope, empty_token, t_i32, false);
+
+
+ Type *proc_type = make_type_proc(a, proc_scope,
+ proc_params, 3,
+ proc_results, 1, false, ProcCC_Std);
+
+ AstNode *body = gb_alloc_item(a, AstNode);
+ Entity *e = make_entity_procedure(a, NULL, make_token_ident(name), proc_type, 0);
+ llirValue *p = llir_make_value_procedure(a, m, e, proc_type, NULL, body, name);
+
+ map_llir_value_set(&m->values, hash_pointer(e), p);
+ map_llir_value_set(&m->members, hash_string(name), p);
+
+ llirProcedure *proc = &p->Proc;
+ proc->tags = ProcTag_no_inline; // TODO(bill): is no_inline a good idea?
+ e->Procedure.link_name = name;
+
+ llir_begin_procedure_body(proc);
+
+ // NOTE(bill): https://msdn.microsoft.com/en-us/library/windows/desktop/ms682583(v=vs.85).aspx
+ // DLL_PROCESS_ATTACH == 1
+
+ llirAddr reason_addr = llir_build_addr_from_entity(proc, proc_params->Tuple.variables[1], NULL);
+ llirValue *cond = llir_emit_comp(proc, Token_CmpEq, llir_addr_load(proc, reason_addr), v_one32);
+ llirBlock *then = llir_add_block(proc, NULL, "if.then");
+ llirBlock *done = llir_add_block(proc, NULL, "if.done"); // NOTE(bill): Append later
+ llir_emit_if(proc, cond, then, done);
+ proc->curr_block = then;
+ llir_emit_global_call(proc, "main", NULL, 0);
+ llir_emit_jump(proc, done);
+ proc->curr_block = done;
+
+ llir_emit_return(proc, v_one32);
+
+
+ llir_end_procedure_body(proc);
+ }
+#endif
+#if defined(GB_SYSTEM_WINDOWS)
+ if (!m->build_context->is_dll && !has_win_main) {
+ // WinMain :: proc(inst, prev: rawptr, cmd_line: ^byte, cmd_show: i32) -> i32
+ String name = str_lit("WinMain");
+ Type *proc_params = make_type_tuple(a);
+ Type *proc_results = make_type_tuple(a);
+
+ Scope *proc_scope = gb_alloc_item(a, Scope);
+
+ proc_params->Tuple.variables = gb_alloc_array(a, Entity *, 4);
+ proc_params->Tuple.variable_count = 4;
+
+ proc_results->Tuple.variables = gb_alloc_array(a, Entity *, 1);
+ proc_results->Tuple.variable_count = 1;
+
+ proc_params->Tuple.variables[0] = make_entity_param(a, proc_scope, blank_token, t_rawptr, false);
+ proc_params->Tuple.variables[1] = make_entity_param(a, proc_scope, blank_token, t_rawptr, false);
+ proc_params->Tuple.variables[2] = make_entity_param(a, proc_scope, blank_token, t_u8_ptr, false);
+ proc_params->Tuple.variables[3] = make_entity_param(a, proc_scope, blank_token, t_i32, false);
+
+ proc_results->Tuple.variables[0] = make_entity_param(a, proc_scope, empty_token, t_i32, false);
+
+
+ Type *proc_type = make_type_proc(a, proc_scope,
+ proc_params, 4,
+ proc_results, 1, false, ProcCC_Std);
+
+ AstNode *body = gb_alloc_item(a, AstNode);
+ Entity *e = make_entity_procedure(a, NULL, make_token_ident(name), proc_type, 0);
+ llirValue *p = llir_make_value_procedure(a, m, e, proc_type, NULL, body, name);
+
+ m->entry_point_entity = e;
+
+ map_llir_value_set(&m->values, hash_pointer(e), p);
+ map_llir_value_set(&m->members, hash_string(name), p);
+
+ llirProcedure *proc = &p->Proc;
+ proc->tags = ProcTag_no_inline; // TODO(bill): is no_inline a good idea?
+ e->Procedure.link_name = name;
+
+ llir_begin_procedure_body(proc);
+ llir_emit_global_call(proc, "main", NULL, 0);
+ llir_emit_return(proc, v_one32);
+ llir_end_procedure_body(proc);
+ }
+#endif
+ { // Startup Runtime
+ // Cleanup(bill): probably better way of doing code insertion
+ String name = str_lit(LLIR_STARTUP_RUNTIME_PROC_NAME);
+ Type *proc_type = make_type_proc(a, gb_alloc_item(a, Scope),
+ NULL, 0,
+ NULL, 0, false, ProcCC_Odin);
+ AstNode *body = gb_alloc_item(a, AstNode);
+ Entity *e = make_entity_procedure(a, NULL, make_token_ident(name), proc_type, 0);
+ llirValue *p = llir_make_value_procedure(a, m, e, proc_type, NULL, body, name);
+
+ map_llir_value_set(&m->values, hash_pointer(e), p);
+ map_llir_value_set(&m->members, hash_string(name), p);
+
+ llirProcedure *proc = &p->Proc;
+ proc->tags = ProcTag_no_inline; // TODO(bill): is no_inline a good idea?
+
+ llir_begin_procedure_body(proc);
+
+ // TODO(bill): Should do a dependency graph do check which order to initialize them in?
+ for_array(i, global_variables) {
+ llirGlobalVariable *var = &global_variables.e[i];
+ if (var->decl->init_expr != NULL) {
+ var->init = llir_build_expr(proc, var->decl->init_expr);
+ }
+ }
+
+ // NOTE(bill): Initialize constants first
+ for_array(i, global_variables) {
+ llirGlobalVariable *var = &global_variables.e[i];
+ if (var->init != NULL) {
+ if (var->init->kind == llirValue_Constant) {
+ llir_emit_store(proc, var->var, var->init);
+ }
+ }
+ }
+
+ for_array(i, global_variables) {
+ llirGlobalVariable *var = &global_variables.e[i];
+ if (var->init != NULL) {
+ if (var->init->kind != llirValue_Constant) {
+ llir_emit_store(proc, var->var, var->init);
+ }
+ }
+ }
+
+ { // NOTE(bill): Setup type_info data
+ // TODO(bill): Try and make a lot of this constant aggregate literals in LLVM IR
+ llirValue *type_info_data = NULL;
+ llirValue *type_info_member_data = NULL;
+
+ llirValue **found = NULL;
+ found = map_llir_value_get(&proc->module->members, hash_string(str_lit(LLIR_TYPE_INFO_DATA_NAME)));
+ GB_ASSERT(found != NULL);
+ type_info_data = *found;
+
+ found = map_llir_value_get(&proc->module->members, hash_string(str_lit(LLIR_TYPE_INFO_DATA_MEMBER_NAME)));
+ GB_ASSERT(found != NULL);
+ type_info_member_data = *found;
+
+ CheckerInfo *info = proc->module->info;
+
+ // Useful types
+ Type *t_i64_slice_ptr = make_type_pointer(a, make_type_slice(a, t_i64));
+ Type *t_string_slice_ptr = make_type_pointer(a, make_type_slice(a, t_string));
+
+ i32 type_info_member_index = 0;
+
+ for_array(type_info_map_index, info->type_info_map.entries) {
+ MapIsizeEntry *entry = &info->type_info_map.entries.e[type_info_map_index];
+ Type *t = cast(Type *)cast(uintptr)entry->key.key;
+ t = default_type(t);
+ isize entry_index = entry->value;
+
+ llirValue *tag = NULL;
+
+ switch (t->kind) {
+ case Type_Named: {
+ tag = llir_add_local_generated(proc, t_type_info_named);
+
+ // TODO(bill): Which is better? The mangled name or actual name?
+ llirValue *name = llir_make_const_string(a, t->Named.type_name->token.string);
+ llirValue *gtip = llir_get_type_info_ptr(proc, type_info_data, t->Named.base);
+
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 0), name);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 1), gtip);
+ } break;
+
+ case Type_Basic:
+ switch (t->Basic.kind) {
+ case Basic_bool:
+ tag = llir_add_local_generated(proc, t_type_info_boolean);
+ break;
+ case Basic_i8:
+ case Basic_u8:
+ case Basic_i16:
+ case Basic_u16:
+ case Basic_i32:
+ case Basic_u32:
+ case Basic_i64:
+ case Basic_u64:
+ // case Basic_i128:
+ // case Basic_u128:
+ case Basic_int:
+ case Basic_uint: {
+ tag = llir_add_local_generated(proc, t_type_info_integer);
+ bool is_unsigned = (t->Basic.flags & BasicFlag_Unsigned) != 0;
+ llirValue *bits = llir_make_const_int(a, type_size_of(m->sizes, a, t));
+ llirValue *is_signed = llir_make_const_bool(a, !is_unsigned);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 0), bits);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 1), is_signed);
+ } break;
+
+ // case Basic_f16:
+ case Basic_f32:
+ case Basic_f64:
+ // case Basic_f128:
+ {
+ tag = llir_add_local_generated(proc, t_type_info_float);
+ llirValue *bits = llir_make_const_int(a, type_size_of(m->sizes, a, t));
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 0), bits);
+ } break;
+
+ case Basic_rawptr:
+ tag = llir_add_local_generated(proc, t_type_info_pointer);
+ break;
+
+ case Basic_string:
+ tag = llir_add_local_generated(proc, t_type_info_string);
+ break;
+
+ case Basic_any:
+ tag = llir_add_local_generated(proc, t_type_info_any);
+ break;
+ }
+ break;
+
+ case Type_Pointer: {
+ tag = llir_add_local_generated(proc, t_type_info_pointer);
+ llirValue *gep = llir_get_type_info_ptr(proc, type_info_data, t->Pointer.elem);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 0), gep);
+ } break;
+ case Type_Maybe: {
+ tag = llir_add_local_generated(proc, t_type_info_maybe);
+ llirValue *gep = llir_get_type_info_ptr(proc, type_info_data, t->Maybe.elem);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 0), gep);
+ } break;
+ case Type_Array: {
+ tag = llir_add_local_generated(proc, t_type_info_array);
+ llirValue *gep = llir_get_type_info_ptr(proc, type_info_data, t->Array.elem);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 0), gep);
+
+ isize ez = type_size_of(m->sizes, a, t->Array.elem);
+ llirValue *elem_size = llir_emit_struct_ep(proc, tag, 1);
+ llir_emit_store(proc, elem_size, llir_make_const_int(a, ez));
+
+ llirValue *count = llir_emit_struct_ep(proc, tag, 2);
+ llir_emit_store(proc, count, llir_make_const_int(a, t->Array.count));
+
+ } break;
+ case Type_Slice: {
+ tag = llir_add_local_generated(proc, t_type_info_slice);
+ llirValue *gep = llir_get_type_info_ptr(proc, type_info_data, t->Slice.elem);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 0), gep);
+
+ isize ez = type_size_of(m->sizes, a, t->Slice.elem);
+ llirValue *elem_size = llir_emit_struct_ep(proc, tag, 1);
+ llir_emit_store(proc, elem_size, llir_make_const_int(a, ez));
+
+ } break;
+ case Type_Vector: {
+ tag = llir_add_local_generated(proc, t_type_info_vector);
+ llirValue *gep = llir_get_type_info_ptr(proc, type_info_data, t->Vector.elem);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 0), gep);
+
+ isize ez = type_size_of(m->sizes, a, t->Vector.elem);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 1), llir_make_const_int(a, ez));
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 2), llir_make_const_int(a, t->Vector.count));
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 3), llir_make_const_int(a, type_align_of(m->sizes, a, t)));
+
+ } break;
+ case Type_Record: {
+ switch (t->Record.kind) {
+ case TypeRecord_Struct: {
+ tag = llir_add_local_generated(proc, t_type_info_struct);
+
+ {
+ llirValue *packed = llir_make_const_bool(a, t->Record.struct_is_packed);
+ llirValue *ordered = llir_make_const_bool(a, t->Record.struct_is_ordered);
+ llirValue *size = llir_make_const_int(a, type_size_of(m->sizes, a, t));
+ llirValue *align = llir_make_const_int(a, type_align_of(m->sizes, a, t));
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 1), size);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 2), align);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 3), packed);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 4), ordered);
+ }
+
+ llirValue *memory = llir_type_info_member_offset(proc, type_info_member_data, t->Record.field_count, &type_info_member_index);
+
+ type_set_offsets(m->sizes, a, t); // NOTE(bill): Just incase the offsets have not been set yet
+ for (isize source_index = 0; source_index < t->Record.field_count; source_index++) {
+ // TODO(bill): Order fields in source order not layout order
+ Entity *f = t->Record.fields_in_src_order[source_index];
+ llirValue *tip = llir_get_type_info_ptr(proc, type_info_data, f->type);
+ i64 foffset = t->Record.struct_offsets[f->Variable.field_index];
+ GB_ASSERT(f->kind == Entity_Variable && f->flags & EntityFlag_Field);
+
+ llirValue *field = llir_emit_ptr_offset(proc, memory, llir_make_const_int(a, source_index));
+ llirValue *name = llir_emit_struct_ep(proc, field, 0);
+ llirValue *type_info = llir_emit_struct_ep(proc, field, 1);
+ llirValue *offset = llir_emit_struct_ep(proc, field, 2);
+
+ if (f->token.string.len > 0) {
+ llir_emit_store(proc, name, llir_make_const_string(a, f->token.string));
+ }
+ llir_emit_store(proc, type_info, tip);
+ llir_emit_store(proc, offset, llir_make_const_int(a, foffset));
+ }
+
+ Type *slice_type = make_type_slice(a, t_type_info_member);
+ Type *slice_type_ptr = make_type_pointer(a, slice_type);
+ llirValue *slice = llir_emit_struct_ep(proc, tag, 0);
+ llirValue *field_count = llir_make_const_int(a, t->Record.field_count);
+
+ llirValue *elem = llir_emit_struct_ep(proc, slice, 0);
+ llirValue *len = llir_emit_struct_ep(proc, slice, 1);
+ llirValue *cap = llir_emit_struct_ep(proc, slice, 2);
+
+ llir_emit_store(proc, elem, memory);
+ llir_emit_store(proc, len, field_count);
+ llir_emit_store(proc, cap, field_count);
+ } break;
+ case TypeRecord_Union:
+ tag = llir_add_local_generated(proc, t_type_info_union);
+ {
+ llirValue *size = llir_make_const_int(a, type_size_of(m->sizes, a, t));
+ llirValue *align = llir_make_const_int(a, type_align_of(m->sizes, a, t));
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 1), size);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 2), align);
+ }
+ break;
+ case TypeRecord_RawUnion: {
+ tag = llir_add_local_generated(proc, t_type_info_raw_union);
+ {
+ llirValue *size = llir_make_const_int(a, type_size_of(m->sizes, a, t));
+ llirValue *align = llir_make_const_int(a, type_align_of(m->sizes, a, t));
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 1), size);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 2), align);
+ }
+
+ llirValue *memory = llir_type_info_member_offset(proc, type_info_member_data, t->Record.field_count, &type_info_member_index);
+
+ for (isize i = 0; i < t->Record.field_count; i++) {
+ llirValue *field = llir_emit_ptr_offset(proc, memory, llir_make_const_int(a, i));
+ llirValue *name = llir_emit_struct_ep(proc, field, 0);
+ llirValue *type_info = llir_emit_struct_ep(proc, field, 1);
+ llirValue *offset = llir_emit_struct_ep(proc, field, 2);
+
+ Entity *f = t->Record.fields[i];
+ llirValue *tip = llir_get_type_info_ptr(proc, type_info_data, f->type);
+
+ if (f->token.string.len > 0) {
+ llir_emit_store(proc, name, llir_make_const_string(a, f->token.string));
+ }
+ llir_emit_store(proc, type_info, tip);
+ llir_emit_store(proc, offset, llir_make_const_int(a, 0));
+ }
+
+ Type *slice_type = make_type_slice(a, t_type_info_member);
+ Type *slice_type_ptr = make_type_pointer(a, slice_type);
+ llirValue *slice = llir_emit_struct_ep(proc, tag, 0);
+ llirValue *field_count = llir_make_const_int(a, t->Record.field_count);
+
+ llirValue *elem = llir_emit_struct_ep(proc, slice, 0);
+ llirValue *len = llir_emit_struct_ep(proc, slice, 1);
+ llirValue *cap = llir_emit_struct_ep(proc, slice, 2);
+
+ llir_emit_store(proc, elem, memory);
+ llir_emit_store(proc, len, field_count);
+ llir_emit_store(proc, cap, field_count);
+ } break;
+ case TypeRecord_Enum:
+ tag = llir_add_local_generated(proc, t_type_info_enum);
+ {
+ GB_ASSERT(t->Record.enum_base_type != NULL);
+ llirValue *base = llir_type_info(proc, t->Record.enum_base_type);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 0), base);
+
+ if (t->Record.field_count > 0) {
+ Entity **fields = t->Record.fields;
+ isize count = t->Record.field_count;
+ llirValue *name_array = NULL;
+
+ {
+ Token token = {Token_Ident};
+ i32 id = cast(i32)entry_index;
+ char name_base[] = "__$enum_names";
+ isize name_len = gb_size_of(name_base) + 10;
+ token.string.text = gb_alloc_array(a, u8, name_len);
+ token.string.len = gb_snprintf(cast(char *)token.string.text, name_len,
+ "%s-%d", name_base, id)-1;
+ Entity *e = make_entity_variable(a, NULL, token, make_type_array(a, t_string, count));
+ name_array = llir_make_value_global(a, e, NULL);
+ name_array->Global.is_private = true;
+ llir_module_add_value(m, e, name_array);
+ map_llir_value_set(&m->members, hash_string(token.string), name_array);
+ }
+
+ for (isize i = 0; i < count; i++) {
+ llirValue *name_ep = llir_emit_array_epi(proc, name_array, i);
+ llir_emit_store(proc, name_ep, llir_make_const_string(a, fields[i]->token.string));
+ }
+
+ llirValue *v_count = llir_make_const_int(a, count);
+
+ llirValue *names = llir_emit_struct_ep(proc, tag, 1);
+ llirValue *name_array_elem = llir_array_elem(proc, name_array);
+
+ llir_emit_store(proc, llir_emit_struct_ep(proc, names, 0), name_array_elem);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, names, 1), v_count);
+ llir_emit_store(proc, llir_emit_struct_ep(proc, names, 2), v_count);
+ }
+ }
+ break;
+ }
+ } break;
+
+ case Type_Tuple: {
+ tag = llir_add_local_generated(proc, t_type_info_tuple);
+
+ {
+ llirValue *align = llir_make_const_int(a, type_align_of(m->sizes, a, t));
+ llir_emit_store(proc, llir_emit_struct_ep(proc, tag, 2), align);
+ }
+
+ llirValue *memory = llir_type_info_member_offset(proc, type_info_member_data, t->Tuple.variable_count, &type_info_member_index);
+
+ for (isize i = 0; i < t->Tuple.variable_count; i++) {
+ llirValue *field = llir_emit_ptr_offset(proc, memory, llir_make_const_int(a, i));
+ llirValue *name = llir_emit_struct_ep(proc, field, 0);
+ llirValue *type_info = llir_emit_struct_ep(proc, field, 1);
+ // NOTE(bill): offset is not used for tuples
+
+ Entity *f = t->Tuple.variables[i];
+ llirValue *tip = llir_get_type_info_ptr(proc, type_info_data, f->type);
+
+ if (f->token.string.len > 0) {
+ llir_emit_store(proc, name, llir_make_const_string(a, f->token.string));
+ }
+ llir_emit_store(proc, type_info, tip);
+ }
+
+ Type *slice_type = make_type_slice(a, t_type_info_member);
+ Type *slice_type_ptr = make_type_pointer(a, slice_type);
+ llirValue *slice = llir_emit_struct_ep(proc, tag, 0);
+ llirValue *variable_count = llir_make_const_int(a, t->Tuple.variable_count);
+
+ llirValue *elem = llir_emit_struct_ep(proc, slice, 0);
+ llirValue *len = llir_emit_struct_ep(proc, slice, 1);
+ llirValue *cap = llir_emit_struct_ep(proc, slice, 2);
+
+ llir_emit_store(proc, elem, memory);
+ llir_emit_store(proc, len, variable_count);
+ llir_emit_store(proc, cap, variable_count);
+ } break;
+
+ case Type_Proc: {
+ tag = llir_add_local_generated(proc, t_type_info_procedure);
+
+ llirValue *params = llir_emit_struct_ep(proc, tag, 0);
+ llirValue *results = llir_emit_struct_ep(proc, tag, 1);
+ llirValue *variadic = llir_emit_struct_ep(proc, tag, 2);
+
+ if (t->Proc.params) {
+ llir_emit_store(proc, params, llir_get_type_info_ptr(proc, type_info_data, t->Proc.params));
+ }
+ if (t->Proc.results) {
+ llir_emit_store(proc, results, llir_get_type_info_ptr(proc, type_info_data, t->Proc.results));
+ }
+ llir_emit_store(proc, variadic, llir_make_const_bool(a, t->Proc.variadic));
+
+ // TODO(bill): Type_Info for procedures
+ } break;
+ }
+
+ if (tag != NULL) {
+ llirValue *gep = llir_emit_array_epi(proc, type_info_data, entry_index);
+ llirValue *val = llir_emit_conv(proc, llir_emit_load(proc, tag), t_type_info);
+ llir_emit_store(proc, gep, val);
+ }
+ }
+ }
+
+ llir_end_procedure_body(proc);
+ }
+
+ for_array(i, m->procs_to_generate) {
+ llir_build_proc(m->procs_to_generate.e[i], m->procs_to_generate.e[i]->Proc.parent);
+ }
+
+
+ // m->layout = str_lit("e-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:64:64-f32:32:32-f64:64:64-v64:64:64-v128:128:128-a0:0:64-s0:64:64-f80:128:128-n8:16:32:64");
+}
+
diff --git a/src/main.c b/src/main.c
index d1571cbd4..ac2d6f6f2 100644
--- a/src/main.c
+++ b/src/main.c
@@ -10,9 +10,8 @@ extern "C" {
#include "parser.c"
// #include "printer.c"
#include "checker/checker.c"
-#include "ssa.c"
-#include "ssa_opt.c"
-#include "ssa_print.c"
+#include "llir.c"
+#include "llir_print.c"
// #include "vm.c"
// NOTE(bill): `name` is used in debugging and profiling modes
@@ -160,27 +159,24 @@ int main(int argc, char **argv) {
#endif
#if 1
- ssaGen ssa = {0};
- if (!ssa_gen_init(&ssa, &checker, &build_context)) {
+ llirGen llir = {0};
+ if (!llir_gen_init(&llir, &checker, &build_context)) {
return 1;
}
- // defer (ssa_gen_destroy(&ssa));
+ // defer (ssa_gen_destroy(&llir));
- timings_start_section(&timings, str_lit("ssa gen"));
- ssa_gen_tree(&ssa);
+ timings_start_section(&timings, str_lit("llvm ir gen"));
+ llir_gen_tree(&llir);
- timings_start_section(&timings, str_lit("ssa opt"));
- ssa_opt_tree(&ssa);
-
- timings_start_section(&timings, str_lit("ssa print"));
- ssa_print_llvm_ir(&ssa);
+ timings_start_section(&timings, str_lit("llvm ir print"));
+ print_llvm_ir(&llir);
// prof_print_all();
#if 1
timings_start_section(&timings, str_lit("llvm-opt"));
- char const *output_name = ssa.output_file.filename;
+ char const *output_name = llir.output_file.filename;
isize base_name_len = gb_path_extension(output_name)-1 - output_name;
String output = make_string(cast(u8 *)output_name, base_name_len);
diff --git a/src/ssa.c b/src/ssa.c
deleted file mode 100644
index ab38764f6..000000000
--- a/src/ssa.c
+++ /dev/null
@@ -1,5807 +0,0 @@
-typedef struct ssaProcedure ssaProcedure;
-typedef struct ssaBlock ssaBlock;
-typedef struct ssaValue ssaValue;
-typedef struct ssaDebugInfo ssaDebugInfo;
-
-typedef Array(ssaValue *) ssaValueArray;
-
-#define MAP_TYPE ssaValue *
-#define MAP_PROC map_ssa_value_
-#define MAP_NAME MapSsaValue
-#include "map.c"
-
-#define MAP_TYPE ssaDebugInfo *
-#define MAP_PROC map_ssa_debug_info_
-#define MAP_NAME MapSsaDebugInfo
-#include "map.c"
-
-typedef struct ssaModule {
- CheckerInfo * info;
- BuildContext *build_context;
- BaseTypeSizes sizes;
- gbArena arena;
- gbArena tmp_arena;
- gbAllocator allocator;
- gbAllocator tmp_allocator;
- bool generate_debug_info;
-
- u32 stmt_state_flags;
-
- // String source_filename;
- String layout;
- // String triple;
-
- MapEntity min_dep_map; // Key: Entity *
- MapSsaValue values; // Key: Entity *
- MapSsaValue members; // Key: String
- MapString type_names; // Key: Type *
- MapSsaDebugInfo debug_info; // Key: Unique pointer
- i32 global_string_index;
- i32 global_array_index; // For ConstantSlice
-
- Entity * entry_point_entity;
-
- Array(ssaProcedure *) procs; // NOTE(bill): All procedures with bodies
- ssaValueArray procs_to_generate; // NOTE(bill): Procedures to generate
-} ssaModule;
-
-// NOTE(bill): For more info, see https://en.wikipedia.org/wiki/Dominator_(graph_theory)
-typedef struct ssaDomNode {
- ssaBlock * idom; // Parent (Immediate Dominator)
- Array(ssaBlock *) children;
- i32 pre, post; // Ordering in tree
-} ssaDomNode;
-
-
-typedef struct ssaBlock {
- i32 index;
- String label;
- ssaProcedure *parent;
- AstNode * node; // Can be NULL
- Scope * scope;
- isize scope_index;
- ssaDomNode dom;
- i32 gaps;
-
- ssaValueArray instrs;
- ssaValueArray locals;
-
- Array(ssaBlock *) preds;
- Array(ssaBlock *) succs;
-} ssaBlock;
-
-typedef struct ssaTargetList ssaTargetList;
-struct ssaTargetList {
- ssaTargetList *prev;
- ssaBlock * break_;
- ssaBlock * continue_;
- ssaBlock * fallthrough_;
-};
-
-typedef enum ssaDeferExitKind {
- ssaDeferExit_Default,
- ssaDeferExit_Return,
- ssaDeferExit_Branch,
-} ssaDeferExitKind;
-typedef enum ssaDeferKind {
- ssaDefer_Node,
- ssaDefer_Instr,
-} ssaDeferKind;
-
-typedef struct ssaDefer {
- ssaDeferKind kind;
- isize scope_index;
- ssaBlock * block;
- union {
- AstNode *stmt;
- // NOTE(bill): `instr` will be copied every time to create a new one
- ssaValue *instr;
- };
-} ssaDefer;
-
-struct ssaProcedure {
- ssaProcedure * parent;
- Array(ssaProcedure *) children;
-
- Entity * entity;
- ssaModule * module;
- String name;
- Type * type;
- AstNode * type_expr;
- AstNode * body;
- u64 tags;
-
- ssaValueArray params;
- Array(ssaDefer) defer_stmts;
- Array(ssaBlock *) blocks;
- i32 scope_index;
- ssaBlock * decl_block;
- ssaBlock * entry_block;
- ssaBlock * curr_block;
- ssaTargetList * target_list;
- ssaValueArray referrers;
-
- i32 local_count;
- i32 instr_count;
- i32 block_count;
-};
-
-#define SSA_STARTUP_RUNTIME_PROC_NAME "__$startup_runtime"
-#define SSA_TYPE_INFO_DATA_NAME "__$type_info_data"
-#define SSA_TYPE_INFO_DATA_MEMBER_NAME "__$type_info_data_member"
-
-
-#define SSA_INSTR_KINDS \
- SSA_INSTR_KIND(Comment, struct { String text; }) \
- SSA_INSTR_KIND(Local, struct { \
- Entity * entity; \
- Type * type; \
- bool zero_initialized; \
- ssaValueArray referrers; \
- }) \
- SSA_INSTR_KIND(ZeroInit, struct { ssaValue *address; }) \
- SSA_INSTR_KIND(Store, struct { ssaValue *address, *value; }) \
- SSA_INSTR_KIND(Load, struct { Type *type; ssaValue *address; }) \
- SSA_INSTR_KIND(PtrOffset, struct { \
- ssaValue *address; \
- ssaValue *offset; \
- }) \
- SSA_INSTR_KIND(ArrayElementPtr, struct { \
- ssaValue *address; \
- Type * result_type; \
- ssaValue *elem_index; \
- }) \
- SSA_INSTR_KIND(StructElementPtr, struct { \
- ssaValue *address; \
- Type * result_type; \
- i32 elem_index; \
- }) \
- SSA_INSTR_KIND(ArrayExtractValue, struct { \
- ssaValue *address; \
- Type * result_type; \
- i32 index; \
- }) \
- SSA_INSTR_KIND(StructExtractValue, struct { \
- ssaValue *address; \
- Type * result_type; \
- i32 index; \
- }) \
- SSA_INSTR_KIND(UnionTagPtr, struct { \
- ssaValue *address; \
- Type *type; /* ^int */ \
- }) \
- SSA_INSTR_KIND(UnionTagValue, struct { \
- ssaValue *address; \
- Type *type; /* int */ \
- }) \
- SSA_INSTR_KIND(Conv, struct { \
- ssaConvKind kind; \
- ssaValue *value; \
- Type *from, *to; \
- }) \
- SSA_INSTR_KIND(Jump, struct { ssaBlock *block; }) \
- SSA_INSTR_KIND(If, struct { \
- ssaValue *cond; \
- ssaBlock *true_block; \
- ssaBlock *false_block; \
- }) \
- SSA_INSTR_KIND(Return, struct { ssaValue *value; }) \
- SSA_INSTR_KIND(Select, struct { \
- ssaValue *cond; \
- ssaValue *true_value; \
- ssaValue *false_value; \
- }) \
- SSA_INSTR_KIND(Phi, struct { ssaValueArray edges; Type *type; }) \
- SSA_INSTR_KIND(Unreachable, i32) \
- SSA_INSTR_KIND(UnaryOp, struct { \
- Type * type; \
- TokenKind op; \
- ssaValue *expr; \
- }) \
- SSA_INSTR_KIND(BinaryOp, struct { \
- Type * type; \
- TokenKind op; \
- ssaValue *left, *right; \
- }) \
- SSA_INSTR_KIND(Call, struct { \
- Type * type; /* return type */ \
- ssaValue *value; \
- ssaValue **args; \
- isize arg_count; \
- }) \
- SSA_INSTR_KIND(VectorExtractElement, struct { \
- ssaValue *vector; \
- ssaValue *index; \
- }) \
- SSA_INSTR_KIND(VectorInsertElement, struct { \
- ssaValue *vector; \
- ssaValue *elem; \
- ssaValue *index; \
- }) \
- SSA_INSTR_KIND(VectorShuffle, struct { \
- ssaValue *vector; \
- i32 * indices; \
- i32 index_count; \
- Type * type; \
- }) \
- SSA_INSTR_KIND(StartupRuntime, i32) \
- SSA_INSTR_KIND(BoundsCheck, struct { \
- TokenPos pos; \
- ssaValue *index; \
- ssaValue *len; \
- }) \
- SSA_INSTR_KIND(SliceBoundsCheck, struct { \
- TokenPos pos; \
- ssaValue *low; \
- ssaValue *high; \
- bool is_substring; \
- })
-
-#define SSA_CONV_KINDS \
- SSA_CONV_KIND(trunc) \
- SSA_CONV_KIND(zext) \
- SSA_CONV_KIND(fptrunc) \
- SSA_CONV_KIND(fpext) \
- SSA_CONV_KIND(fptoui) \
- SSA_CONV_KIND(fptosi) \
- SSA_CONV_KIND(uitofp) \
- SSA_CONV_KIND(sitofp) \
- SSA_CONV_KIND(ptrtoint) \
- SSA_CONV_KIND(inttoptr) \
- SSA_CONV_KIND(bitcast)
-
-typedef enum ssaInstrKind {
- ssaInstr_Invalid,
-#define SSA_INSTR_KIND(x, ...) GB_JOIN2(ssaInstr_, x),
- SSA_INSTR_KINDS
-#undef SSA_INSTR_KIND
-} ssaInstrKind;
-
-String const ssa_instr_strings[] = {
- {cast(u8 *)"Invalid", gb_size_of("Invalid")-1},
-#define SSA_INSTR_KIND(x, ...) {cast(u8 *)#x, gb_size_of(#x)-1},
- SSA_INSTR_KINDS
-#undef SSA_INSTR_KIND
-};
-
-typedef enum ssaConvKind {
- ssaConv_Invalid,
-#define SSA_CONV_KIND(x) GB_JOIN2(ssaConv_, x),
- SSA_CONV_KINDS
-#undef SSA_CONV_KIND
-} ssaConvKind;
-
-String const ssa_conv_strings[] = {
- {cast(u8 *)"Invalid", gb_size_of("Invalid")-1},
-#define SSA_CONV_KIND(x) {cast(u8 *)#x, gb_size_of(#x)-1},
- SSA_CONV_KINDS
-#undef SSA_CONV_KIND
-};
-
-#define SSA_INSTR_KIND(k, ...) typedef __VA_ARGS__ GB_JOIN2(ssaInstr, k);
- SSA_INSTR_KINDS
-#undef SSA_INSTR_KIND
-
-typedef struct ssaInstr ssaInstr;
-struct ssaInstr {
- ssaInstrKind kind;
-
- ssaBlock *parent;
- Type *type;
-
- union {
-#define SSA_INSTR_KIND(k, ...) GB_JOIN2(ssaInstr, k) k;
- SSA_INSTR_KINDS
-#undef SSA_INSTR_KIND
- };
-};
-
-
-typedef enum ssaValueKind {
- ssaValue_Invalid,
-
- ssaValue_Constant,
- ssaValue_ConstantSlice,
- ssaValue_Nil,
- ssaValue_TypeName,
- ssaValue_Global,
- ssaValue_Param,
-
- ssaValue_Proc,
- ssaValue_Block,
- ssaValue_Instr,
-
- ssaValue_Count,
-} ssaValueKind;
-
-typedef struct ssaValueConstant {
- Type * type;
- ExactValue value;
-} ssaValueConstant;
-
-typedef struct ssaValueConstantSlice {
- Type * type;
- ssaValue *backing_array;
- i64 count;
-} ssaValueConstantSlice;
-
-typedef struct ssaValueNil {
- Type *type;
-} ssaValueNil;
-
-typedef struct ssaValueTypeName {
- Type * type;
- String name;
-} ssaValueTypeName;
-
-typedef struct ssaValueGlobal {
- Entity * entity;
- Type * type;
- ssaValue * value;
- ssaValueArray referrers;
- bool is_constant;
- bool is_private;
- bool is_thread_local;
- bool is_unnamed_addr;
-} ssaValueGlobal;
-
-typedef struct ssaValueParam {
- ssaProcedure *parent;
- Entity * entity;
- Type * type;
- ssaValueArray referrers;
-} ssaValueParam;
-
-typedef struct ssaValue {
- ssaValueKind kind;
- i32 index;
- union {
- ssaValueConstant Constant;
- ssaValueConstantSlice ConstantSlice;
- ssaValueNil Nil;
- ssaValueTypeName TypeName;
- ssaValueGlobal Global;
- ssaValueParam Param;
- ssaProcedure Proc;
- ssaBlock Block;
- ssaInstr Instr;
- };
-} ssaValue;
-
-gb_global ssaValue *v_zero = NULL;
-gb_global ssaValue *v_one = NULL;
-gb_global ssaValue *v_zero32 = NULL;
-gb_global ssaValue *v_one32 = NULL;
-gb_global ssaValue *v_two32 = NULL;
-gb_global ssaValue *v_false = NULL;
-gb_global ssaValue *v_true = NULL;
-
-typedef enum ssaAddrKind {
- ssaAddr_Default,
- ssaAddr_Vector,
-} ssaAddrKind;
-
-typedef struct ssaAddr {
- ssaValue * addr;
- AstNode * expr; // NOTE(bill): Just for testing - probably remove later
- ssaAddrKind kind;
- union {
- struct { ssaValue *index; } Vector;
- };
-} ssaAddr;
-
-ssaAddr ssa_make_addr(ssaValue *addr, AstNode *expr) {
- ssaAddr v = {addr, expr};
- return v;
-}
-ssaAddr ssa_make_addr_vector(ssaValue *addr, ssaValue *index, AstNode *expr) {
- ssaAddr v = ssa_make_addr(addr, expr);
- v.kind = ssaAddr_Vector;
- v.Vector.index = index;
- return v;
-}
-
-
-
-typedef enum ssaDebugEncoding {
- ssaDebugBasicEncoding_Invalid = 0,
-
- ssaDebugBasicEncoding_address = 1,
- ssaDebugBasicEncoding_boolean = 2,
- ssaDebugBasicEncoding_float = 3,
- ssaDebugBasicEncoding_signed = 4,
- ssaDebugBasicEncoding_signed_char = 5,
- ssaDebugBasicEncoding_unsigned = 6,
- ssaDebugBasicEncoding_unsigned_char = 7,
-
- ssaDebugBasicEncoding_member = 13,
- ssaDebugBasicEncoding_pointer_type = 15,
- ssaDebugBasicEncoding_typedef = 22,
-
- ssaDebugBasicEncoding_array_type = 1,
- ssaDebugBasicEncoding_enumeration_type = 4,
- ssaDebugBasicEncoding_structure_type = 19,
- ssaDebugBasicEncoding_union_type = 23,
-
-} ssaDebugEncoding;
-
-typedef enum ssaDebugInfoKind {
- ssaDebugInfo_Invalid,
-
- ssaDebugInfo_CompileUnit,
- ssaDebugInfo_File,
- ssaDebugInfo_Scope,
- ssaDebugInfo_Proc,
- ssaDebugInfo_AllProcs,
-
- ssaDebugInfo_BasicType, // basic types
- ssaDebugInfo_ProcType,
- ssaDebugInfo_DerivedType, // pointer, typedef
- ssaDebugInfo_CompositeType, // array, struct, enum, (raw_)union
- ssaDebugInfo_Enumerator, // For ssaDebugInfo_CompositeType if enum
- ssaDebugInfo_GlobalVariable,
- ssaDebugInfo_LocalVariable,
-
-
- ssaDebugInfo_Count,
-} ssaDebugInfoKind;
-
-typedef struct ssaDebugInfo ssaDebugInfo;
-struct ssaDebugInfo {
- ssaDebugInfoKind kind;
- i32 id;
-
- union {
- struct {
- AstFile * file;
- String producer;
- ssaDebugInfo *all_procs;
- } CompileUnit;
- struct {
- AstFile *file;
- String filename;
- String directory;
- } File;
- struct {
- ssaDebugInfo *parent;
- ssaDebugInfo *file;
- TokenPos pos;
- Scope * scope; // Actual scope
- } Scope;
- struct {
- Entity * entity;
- String name;
- ssaDebugInfo *file;
- TokenPos pos;
- } Proc;
- struct {
- Array(ssaDebugInfo *) procs;
- } AllProcs;
-
-
- struct {
- String name;
- i32 size;
- i32 align;
- ssaDebugEncoding encoding;
- } BasicType;
- struct {
- ssaDebugInfo * return_type;
- Array(ssaDebugInfo *) param_types;
- } ProcType;
- struct {
- ssaDebugInfo * base_type;
- ssaDebugEncoding encoding;
- } DerivedType;
- struct {
- ssaDebugEncoding encoding;
- String name;
- String identifier;
- ssaDebugInfo * file;
- TokenPos pos;
- i32 size;
- i32 align;
- Array(ssaDebugInfo *) elements;
- } CompositeType;
- struct {
- String name;
- i64 value;
- } Enumerator;
- struct {
- String name;
- String linkage_name;
- ssaDebugInfo *scope;
- ssaDebugInfo *file;
- TokenPos pos;
- ssaValue *variable;
- ssaDebugInfo *declaration;
- } GlobalVariable;
- struct {
- String name;
- ssaDebugInfo *scope;
- ssaDebugInfo *file;
- TokenPos pos;
- i32 arg; // Non-zero if proc parameter
- ssaDebugInfo *type;
- } LocalVariable;
- };
-};
-
-typedef struct ssaGen {
- ssaModule module;
- gbFile output_file;
- bool opt_called;
-} ssaGen;
-
-ssaValue *ssa_lookup_member(ssaModule *m, String name) {
- ssaValue **v = map_ssa_value_get(&m->members, hash_string(name));
- if (v != NULL) {
- return *v;
- }
- return NULL;
-}
-
-
-Type *ssa_type(ssaValue *value);
-Type *ssa_instr_type(ssaInstr *instr) {
- switch (instr->kind) {
- case ssaInstr_Local:
- return instr->Local.type;
- case ssaInstr_Load:
- return instr->Load.type;
- case ssaInstr_StructElementPtr:
- return instr->StructElementPtr.result_type;
- case ssaInstr_ArrayElementPtr:
- return instr->ArrayElementPtr.result_type;
- case ssaInstr_PtrOffset:
- return ssa_type(instr->PtrOffset.address);
- case ssaInstr_Phi:
- return instr->Phi.type;
- case ssaInstr_ArrayExtractValue:
- return instr->ArrayExtractValue.result_type;
- case ssaInstr_StructExtractValue:
- return instr->StructExtractValue.result_type;
- case ssaInstr_UnionTagPtr:
- return instr->UnionTagPtr.type;
- case ssaInstr_UnionTagValue:
- return instr->UnionTagValue.type;
- case ssaInstr_UnaryOp:
- return instr->UnaryOp.type;
- case ssaInstr_BinaryOp:
- return instr->BinaryOp.type;
- case ssaInstr_Conv:
- return instr->Conv.to;
- case ssaInstr_Select:
- return ssa_type(instr->Select.true_value);
- case ssaInstr_Call: {
- Type *pt = base_type(instr->Call.type);
- if (pt != NULL) {
- if (pt->kind == Type_Tuple && pt->Tuple.variable_count == 1) {
- return pt->Tuple.variables[0]->type;
- }
- return pt;
- }
- return NULL;
- } break;
- case ssaInstr_VectorExtractElement: {
- Type *vt = ssa_type(instr->VectorExtractElement.vector);
- Type *bt = base_vector_type(vt);
- GB_ASSERT(!is_type_vector(bt));
- return bt;
- } break;
- case ssaInstr_VectorInsertElement:
- return ssa_type(instr->VectorInsertElement.vector);
- case ssaInstr_VectorShuffle:
- return instr->VectorShuffle.type;
- }
- return NULL;
-}
-
-Type *ssa_type(ssaValue *value) {
- switch (value->kind) {
- case ssaValue_Constant:
- return value->Constant.type;
- case ssaValue_ConstantSlice:
- return value->ConstantSlice.type;
- case ssaValue_Nil:
- return value->Nil.type;
- case ssaValue_TypeName:
- return value->TypeName.type;
- case ssaValue_Global:
- return value->Global.type;
- case ssaValue_Param:
- return value->Param.type;
- case ssaValue_Proc:
- return value->Proc.type;
- case ssaValue_Instr:
- return ssa_instr_type(&value->Instr);
- }
- return NULL;
-}
-
-Type *ssa_addr_type(ssaAddr lval) {
- if (lval.addr != NULL) {
- Type *t = ssa_type(lval.addr);
- GB_ASSERT(is_type_pointer(t));
- return type_deref(t);
- }
- return NULL;
-}
-
-
-
-bool ssa_is_blank_ident(AstNode *node) {
- if (node->kind == AstNode_Ident) {
- ast_node(i, Ident, node);
- return is_blank_ident(i->string);
- }
- return false;
-}
-
-
-ssaInstr *ssa_get_last_instr(ssaBlock *block) {
- if (block != NULL) {
- isize len = block->instrs.count;
- if (len > 0) {
- ssaValue *v = block->instrs.e[len-1];
- GB_ASSERT(v->kind == ssaValue_Instr);
- return &v->Instr;
- }
- }
- return NULL;
-
-}
-
-bool ssa_is_instr_terminating(ssaInstr *i) {
- if (i != NULL) {
- switch (i->kind) {
- case ssaInstr_Return:
- case ssaInstr_Unreachable:
- return true;
- }
- }
-
- return false;
-}
-
-
-void ssa_add_edge(ssaBlock *from, ssaBlock *to) {
- array_add(&from->succs, to);
- array_add(&to->preds, from);
-}
-
-void ssa_set_instr_parent(ssaValue *instr, ssaBlock *parent) {
- if (instr->kind == ssaValue_Instr) {
- instr->Instr.parent = parent;
- }
-}
-
-ssaValueArray *ssa_value_referrers(ssaValue *v) {
- switch (v->kind) {
- case ssaValue_Global:
- return &v->Global.referrers;
- case ssaValue_Param:
- return &v->Param.referrers;
- case ssaValue_Proc: {
- if (v->Proc.parent != NULL) {
- return &v->Proc.referrers;
- }
- return NULL;
- }
- case ssaValue_Instr: {
- ssaInstr *i = &v->Instr;
- switch (i->kind) {
- case ssaInstr_Local:
- return &i->Local.referrers;
- }
- } break;
- }
-
- return NULL;
-}
-
-
-
-////////////////////////////////////////////////////////////////
-//
-// @Make
-//
-////////////////////////////////////////////////////////////////
-
-void ssa_module_add_value (ssaModule *m, Entity *e, ssaValue *v);
-ssaValue *ssa_emit_zero_init (ssaProcedure *p, ssaValue *address);
-ssaValue *ssa_emit_comment (ssaProcedure *p, String text);
-ssaValue *ssa_emit_store (ssaProcedure *p, ssaValue *address, ssaValue *value);
-ssaValue *ssa_emit_load (ssaProcedure *p, ssaValue *address);
-void ssa_emit_jump (ssaProcedure *proc, ssaBlock *block);
-ssaValue *ssa_emit_conv (ssaProcedure *proc, ssaValue *value, Type *t);
-ssaValue *ssa_type_info (ssaProcedure *proc, Type *type);
-ssaValue *ssa_build_expr (ssaProcedure *proc, AstNode *expr);
-void ssa_build_stmt (ssaProcedure *proc, AstNode *node);
-ssaValue *ssa_build_cond (ssaProcedure *proc, AstNode *cond, ssaBlock *true_block, ssaBlock *false_block);
-void ssa_build_defer_stmt (ssaProcedure *proc, ssaDefer d);
-ssaAddr ssa_build_addr (ssaProcedure *proc, AstNode *expr);
-void ssa_build_proc (ssaValue *value, ssaProcedure *parent);
-void ssa_gen_global_type_name(ssaModule *m, Entity *e, String name);
-
-
-
-
-ssaValue *ssa_alloc_value(gbAllocator a, ssaValueKind kind) {
- ssaValue *v = gb_alloc_item(a, ssaValue);
- v->kind = kind;
- return v;
-}
-ssaValue *ssa_alloc_instr(ssaProcedure *proc, ssaInstrKind kind) {
- ssaValue *v = ssa_alloc_value(proc->module->allocator, ssaValue_Instr);
- v->Instr.kind = kind;
- proc->instr_count++;
- return v;
-}
-ssaDebugInfo *ssa_alloc_debug_info(gbAllocator a, ssaDebugInfoKind kind) {
- ssaDebugInfo *di = gb_alloc_item(a, ssaDebugInfo);
- di->kind = kind;
- return di;
-}
-
-
-
-
-ssaValue *ssa_make_value_type_name(gbAllocator a, String name, Type *type) {
- ssaValue *v = ssa_alloc_value(a, ssaValue_TypeName);
- v->TypeName.name = name;
- v->TypeName.type = type;
- return v;
-}
-
-ssaValue *ssa_make_value_global(gbAllocator a, Entity *e, ssaValue *value) {
- ssaValue *v = ssa_alloc_value(a, ssaValue_Global);
- v->Global.entity = e;
- v->Global.type = make_type_pointer(a, e->type);
- v->Global.value = value;
- array_init(&v->Global.referrers, heap_allocator()); // TODO(bill): Replace heap allocator here
- return v;
-}
-ssaValue *ssa_make_value_param(gbAllocator a, ssaProcedure *parent, Entity *e) {
- ssaValue *v = ssa_alloc_value(a, ssaValue_Param);
- v->Param.parent = parent;
- v->Param.entity = e;
- v->Param.type = e->type;
- array_init(&v->Param.referrers, heap_allocator()); // TODO(bill): Replace heap allocator here
- return v;
-}
-ssaValue *ssa_make_value_nil(gbAllocator a, Type *type) {
- ssaValue *v = ssa_alloc_value(a, ssaValue_Nil);
- v->Nil.type = type;
- return v;
-}
-
-
-
-ssaValue *ssa_make_instr_local(ssaProcedure *p, Entity *e, bool zero_initialized) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_Local);
- ssaInstr *i = &v->Instr;
- i->Local.entity = e;
- i->Local.type = make_type_pointer(p->module->allocator, e->type);
- i->Local.zero_initialized = zero_initialized;
- array_init(&i->Local.referrers, heap_allocator()); // TODO(bill): Replace heap allocator here
- ssa_module_add_value(p->module, e, v);
- return v;
-}
-
-
-ssaValue *ssa_make_instr_store(ssaProcedure *p, ssaValue *address, ssaValue *value) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_Store);
- ssaInstr *i = &v->Instr;
- i->Store.address = address;
- i->Store.value = value;
- return v;
-}
-
-ssaValue *ssa_make_instr_zero_init(ssaProcedure *p, ssaValue *address) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_ZeroInit);
- ssaInstr *i = &v->Instr;
- i->ZeroInit.address = address;
- return v;
-}
-
-ssaValue *ssa_make_instr_load(ssaProcedure *p, ssaValue *address) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_Load);
- ssaInstr *i = &v->Instr;
- i->Load.address = address;
- i->Load.type = type_deref(ssa_type(address));
- return v;
-}
-
-ssaValue *ssa_make_instr_array_element_ptr(ssaProcedure *p, ssaValue *address, ssaValue *elem_index) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_ArrayElementPtr);
- ssaInstr *i = &v->Instr;
- Type *t = ssa_type(address);
- GB_ASSERT(is_type_pointer(t));
- t = base_type(type_deref(t));
- GB_ASSERT(is_type_array(t) || is_type_vector(t));
-
- Type *result_type = make_type_pointer(p->module->allocator, t->Array.elem);
-
- i->ArrayElementPtr.address = address;
- i->ArrayElementPtr.elem_index = elem_index;
- i->ArrayElementPtr.result_type = result_type;
-
- GB_ASSERT_MSG(is_type_pointer(ssa_type(address)),
- "%s", type_to_string(ssa_type(address)));
- return v;
-}
-ssaValue *ssa_make_instr_struct_element_ptr(ssaProcedure *p, ssaValue *address, i32 elem_index, Type *result_type) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_StructElementPtr);
- ssaInstr *i = &v->Instr;
- i->StructElementPtr.address = address;
- i->StructElementPtr.elem_index = elem_index;
- i->StructElementPtr.result_type = result_type;
-
- GB_ASSERT_MSG(is_type_pointer(ssa_type(address)),
- "%s", type_to_string(ssa_type(address)));
- return v;
-}
-ssaValue *ssa_make_instr_ptr_offset(ssaProcedure *p, ssaValue *address, ssaValue *offset) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_PtrOffset);
- ssaInstr *i = &v->Instr;
- i->PtrOffset.address = address;
- i->PtrOffset.offset = offset;
-
- GB_ASSERT_MSG(is_type_pointer(ssa_type(address)),
- "%s", type_to_string(ssa_type(address)));
- GB_ASSERT_MSG(is_type_integer(ssa_type(offset)),
- "%s", type_to_string(ssa_type(address)));
-
- return v;
-}
-
-
-
-ssaValue *ssa_make_instr_array_extract_value(ssaProcedure *p, ssaValue *address, i32 index) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_ArrayExtractValue);
- ssaInstr *i = &v->Instr;
- i->ArrayExtractValue.address = address;
- i->ArrayExtractValue.index = index;
- Type *t = base_type(ssa_type(address));
- GB_ASSERT(is_type_array(t));
- i->ArrayExtractValue.result_type = t->Array.elem;
- return v;
-}
-
-ssaValue *ssa_make_instr_struct_extract_value(ssaProcedure *p, ssaValue *address, i32 index, Type *result_type) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_StructExtractValue);
- ssaInstr *i = &v->Instr;
- i->StructExtractValue.address = address;
- i->StructExtractValue.index = index;
- i->StructExtractValue.result_type = result_type;
- return v;
-}
-
-ssaValue *ssa_make_instr_union_tag_ptr(ssaProcedure *p, ssaValue *address) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_UnionTagPtr);
- ssaInstr *i = &v->Instr;
- i->UnionTagPtr.address = address;
- i->UnionTagPtr.type = t_int_ptr;
- return v;
-}
-
-ssaValue *ssa_make_instr_union_tag_value(ssaProcedure *p, ssaValue *address) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_UnionTagValue);
- ssaInstr *i = &v->Instr;
- i->UnionTagValue.address = address;
- i->UnionTagValue.type = t_int_ptr;
- return v;
-}
-
-ssaValue *ssa_make_instr_unary_op(ssaProcedure *p, TokenKind op, ssaValue *expr, Type *type) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_UnaryOp);
- ssaInstr *i = &v->Instr;
- i->UnaryOp.op = op;
- i->UnaryOp.expr = expr;
- i->UnaryOp.type = type;
- return v;
-}
-
-
-ssaValue *ssa_make_instr_binary_op(ssaProcedure *p, TokenKind op, ssaValue *left, ssaValue *right, Type *type) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_BinaryOp);
- ssaInstr *i = &v->Instr;
- i->BinaryOp.op = op;
- i->BinaryOp.left = left;
- i->BinaryOp.right = right;
- i->BinaryOp.type = type;
- return v;
-}
-
-ssaValue *ssa_make_instr_jump(ssaProcedure *p, ssaBlock *block) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_Jump);
- ssaInstr *i = &v->Instr;
- i->Jump.block = block;
- return v;
-}
-ssaValue *ssa_make_instr_if(ssaProcedure *p, ssaValue *cond, ssaBlock *true_block, ssaBlock *false_block) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_If);
- ssaInstr *i = &v->Instr;
- i->If.cond = cond;
- i->If.true_block = true_block;
- i->If.false_block = false_block;
- return v;
-}
-
-
-ssaValue *ssa_make_instr_phi(ssaProcedure *p, ssaValueArray edges, Type *type) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_Phi);
- ssaInstr *i = &v->Instr;
- i->Phi.edges = edges;
- i->Phi.type = type;
- return v;
-}
-
-ssaValue *ssa_make_instr_unreachable(ssaProcedure *p) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_Unreachable);
- return v;
-}
-
-ssaValue *ssa_make_instr_return(ssaProcedure *p, ssaValue *value) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_Return);
- v->Instr.Return.value = value;
- return v;
-}
-
-ssaValue *ssa_make_instr_select(ssaProcedure *p, ssaValue *cond, ssaValue *t, ssaValue *f) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_Select);
- v->Instr.Select.cond = cond;
- v->Instr.Select.true_value = t;
- v->Instr.Select.false_value = f;
- return v;
-}
-
-ssaValue *ssa_make_instr_call(ssaProcedure *p, ssaValue *value, ssaValue **args, isize arg_count, Type *result_type) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_Call);
- v->Instr.Call.value = value;
- v->Instr.Call.args = args;
- v->Instr.Call.arg_count = arg_count;
- v->Instr.Call.type = result_type;
- return v;
-}
-
-ssaValue *ssa_make_instr_conv(ssaProcedure *p, ssaConvKind kind, ssaValue *value, Type *from, Type *to) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_Conv);
- v->Instr.Conv.kind = kind;
- v->Instr.Conv.value = value;
- v->Instr.Conv.from = from;
- v->Instr.Conv.to = to;
- return v;
-}
-
-ssaValue *ssa_make_instr_extract_element(ssaProcedure *p, ssaValue *vector, ssaValue *index) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_VectorExtractElement);
- v->Instr.VectorExtractElement.vector = vector;
- v->Instr.VectorExtractElement.index = index;
- return v;
-}
-
-ssaValue *ssa_make_instr_insert_element(ssaProcedure *p, ssaValue *vector, ssaValue *elem, ssaValue *index) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_VectorInsertElement);
- v->Instr.VectorInsertElement.vector = vector;
- v->Instr.VectorInsertElement.elem = elem;
- v->Instr.VectorInsertElement.index = index;
- return v;
-}
-
-ssaValue *ssa_make_instr_vector_shuffle(ssaProcedure *p, ssaValue *vector, i32 *indices, isize index_count) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_VectorShuffle);
- v->Instr.VectorShuffle.vector = vector;
- v->Instr.VectorShuffle.indices = indices;
- v->Instr.VectorShuffle.index_count = index_count;
-
- Type *vt = base_type(ssa_type(vector));
- v->Instr.VectorShuffle.type = make_type_vector(p->module->allocator, vt->Vector.elem, index_count);
-
- return v;
-}
-
-ssaValue *ssa_make_instr_comment(ssaProcedure *p, String text) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_Comment);
- v->Instr.Comment.text = text;
- return v;
-}
-
-ssaValue *ssa_make_instr_bounds_check(ssaProcedure *p, TokenPos pos, ssaValue *index, ssaValue *len) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_BoundsCheck);
- v->Instr.BoundsCheck.pos = pos;
- v->Instr.BoundsCheck.index = index;
- v->Instr.BoundsCheck.len = len;
- return v;
-}
-ssaValue *ssa_make_instr_slice_bounds_check(ssaProcedure *p, TokenPos pos, ssaValue *low, ssaValue *high, bool is_substring) {
- ssaValue *v = ssa_alloc_instr(p, ssaInstr_SliceBoundsCheck);
- v->Instr.SliceBoundsCheck.pos = pos;
- v->Instr.SliceBoundsCheck.low = low;
- v->Instr.SliceBoundsCheck.high = high;
- v->Instr.SliceBoundsCheck.is_substring = is_substring;
- return v;
-}
-
-
-
-ssaValue *ssa_make_value_constant(gbAllocator a, Type *type, ExactValue value) {
- ssaValue *v = ssa_alloc_value(a, ssaValue_Constant);
- v->Constant.type = type;
- v->Constant.value = value;
- return v;
-}
-
-
-ssaValue *ssa_make_value_constant_slice(gbAllocator a, Type *type, ssaValue *backing_array, i64 count) {
- ssaValue *v = ssa_alloc_value(a, ssaValue_ConstantSlice);
- v->ConstantSlice.type = type;
- v->ConstantSlice.backing_array = backing_array;
- v->ConstantSlice.count = count;
- return v;
-}
-
-ssaValue *ssa_make_const_int(gbAllocator a, i64 i) {
- return ssa_make_value_constant(a, t_int, make_exact_value_integer(i));
-}
-ssaValue *ssa_make_const_i32(gbAllocator a, i64 i) {
- return ssa_make_value_constant(a, t_i32, make_exact_value_integer(i));
-}
-ssaValue *ssa_make_const_i64(gbAllocator a, i64 i) {
- return ssa_make_value_constant(a, t_i64, make_exact_value_integer(i));
-}
-ssaValue *ssa_make_const_bool(gbAllocator a, bool b) {
- return ssa_make_value_constant(a, t_bool, make_exact_value_bool(b != 0));
-}
-ssaValue *ssa_make_const_string(gbAllocator a, String s) {
- return ssa_make_value_constant(a, t_string, make_exact_value_string(s));
-}
-
-ssaValue *ssa_make_value_procedure(gbAllocator a, ssaModule *m, Entity *entity, Type *type, AstNode *type_expr, AstNode *body, String name) {
- ssaValue *v = ssa_alloc_value(a, ssaValue_Proc);
- v->Proc.module = m;
- v->Proc.entity = entity;
- v->Proc.type = type;
- v->Proc.type_expr = type_expr;
- v->Proc.body = body;
- v->Proc.name = name;
- array_init(&v->Proc.referrers, heap_allocator()); // TODO(bill): replace heap allocator
-
- Type *t = base_type(type);
- GB_ASSERT(is_type_proc(t));
- array_init_reserve(&v->Proc.params, heap_allocator(), t->Proc.param_count);
-
- return v;
-}
-
-ssaBlock *ssa_add_block(ssaProcedure *proc, AstNode *node, char *label) {
- Scope *scope = NULL;
- if (node != NULL) {
- Scope **found = map_scope_get(&proc->module->info->scopes, hash_pointer(node));
- if (found) {
- scope = *found;
- } else {
- GB_PANIC("Block scope not found for %.*s", LIT(ast_node_strings[node->kind]));
- }
- }
-
- ssaValue *v = ssa_alloc_value(proc->module->allocator, ssaValue_Block);
- v->Block.label = make_string_c(label);
- v->Block.node = node;
- v->Block.scope = scope;
- v->Block.parent = proc;
-
- array_init(&v->Block.instrs, heap_allocator());
- array_init(&v->Block.locals, heap_allocator());
-
- array_init(&v->Block.preds, heap_allocator());
- array_init(&v->Block.succs, heap_allocator());
-
- ssaBlock *block = &v->Block;
-
- array_add(&proc->blocks, block);
- proc->block_count++;
-
- return block;
-}
-
-
-
-
-
-ssaDefer ssa_add_defer_node(ssaProcedure *proc, isize scope_index, AstNode *stmt) {
- ssaDefer d = {ssaDefer_Node};
- d.scope_index = scope_index;
- d.block = proc->curr_block;
- d.stmt = stmt;
- array_add(&proc->defer_stmts, d);
- return d;
-}
-
-
-ssaDefer ssa_add_defer_instr(ssaProcedure *proc, isize scope_index, ssaValue *instr) {
- ssaDefer d = {ssaDefer_Instr};
- d.scope_index = proc->scope_index;
- d.block = proc->curr_block;
- d.instr = instr; // NOTE(bill): It will make a copy everytime it is called
- array_add(&proc->defer_stmts, d);
- return d;
-}
-
-
-
-ssaValue *ssa_add_module_constant(ssaModule *m, Type *type, ExactValue value) {
- gbAllocator a = m->allocator;
- // gbAllocator a = gb_heap_allocator();
-
- if (is_type_slice(type)) {
- ast_node(cl, CompoundLit, value.value_compound);
-
- isize count = cl->elems.count;
- if (count == 0) {
- return ssa_make_value_nil(a, type);
- }
- Type *elem = base_type(type)->Slice.elem;
- Type *t = make_type_array(a, elem, count);
- ssaValue *backing_array = ssa_add_module_constant(m, t, value);
-
-
- isize max_len = 7+8+1;
- u8 *str = cast(u8 *)gb_alloc_array(a, u8, max_len);
- isize len = gb_snprintf(cast(char *)str, max_len, "__csba$%x", m->global_array_index);
- m->global_array_index++;
-
- String name = make_string(str, len-1);
-
- Entity *e = make_entity_constant(a, NULL, make_token_ident(name), t, value);
- ssaValue *g = ssa_make_value_global(a, e, backing_array);
- ssa_module_add_value(m, e, g);
- map_ssa_value_set(&m->members, hash_string(name), g);
-
- return ssa_make_value_constant_slice(a, type, g, count);
- }
-
- return ssa_make_value_constant(a, type, value);
-}
-
-ssaValue *ssa_add_global_string_array(ssaModule *m, String string) {
- // TODO(bill): Should this use the arena allocator or the heap allocator?
- // Strings could be huge!
- gbAllocator a = m->allocator;
- // gbAllocator a = gb_heap_allocator();
-
- isize max_len = 6+8+1;
- u8 *str = cast(u8 *)gb_alloc_array(a, u8, max_len);
- isize len = gb_snprintf(cast(char *)str, max_len, "__str$%x", m->global_string_index);
- m->global_string_index++;
-
- String name = make_string(str, len-1);
- Token token = {Token_String};
- token.string = name;
- Type *type = make_type_array(a, t_u8, string.len);
- ExactValue ev = make_exact_value_string(string);
- Entity *entity = make_entity_constant(a, NULL, token, type, ev);
- ssaValue *g = ssa_make_value_global(a, entity, ssa_add_module_constant(m, type, ev));
- g->Global.is_private = true;
- // g->Global.is_unnamed_addr = true;
- // g->Global.is_constant = true;
-
- ssa_module_add_value(m, entity, g);
- map_ssa_value_set(&m->members, hash_string(name), g);
-
- return g;
-}
-
-
-
-
-ssaValue *ssa_add_local(ssaProcedure *proc, Entity *e) {
- ssaBlock *b = proc->decl_block; // all variables must be in the first block
- ssaValue *instr = ssa_make_instr_local(proc, e, true);
- instr->Instr.parent = b;
- array_add(&b->instrs, instr);
- array_add(&b->locals, instr);
- proc->local_count++;
-
- // if (zero_initialized) {
- ssa_emit_zero_init(proc, instr);
- // }
-
- return instr;
-}
-
-ssaValue *ssa_add_local_for_identifier(ssaProcedure *proc, AstNode *name, bool zero_initialized) {
- Entity **found = map_entity_get(&proc->module->info->definitions, hash_pointer(name));
- if (found) {
- Entity *e = *found;
- ssa_emit_comment(proc, e->token.string);
- return ssa_add_local(proc, e);
- }
- return NULL;
-}
-
-ssaValue *ssa_add_local_generated(ssaProcedure *proc, Type *type) {
- GB_ASSERT(type != NULL);
-
- Scope *scope = NULL;
- if (proc->curr_block) {
- scope = proc->curr_block->scope;
- }
- Entity *e = make_entity_variable(proc->module->allocator,
- scope,
- empty_token,
- type);
- return ssa_add_local(proc, e);
-}
-
-ssaValue *ssa_add_param(ssaProcedure *proc, Entity *e) {
- ssaValue *v = ssa_make_value_param(proc->module->allocator, proc, e);
-#if 1
- ssaValue *l = ssa_add_local(proc, e);
- ssa_emit_store(proc, l, v);
-#else
- ssa_module_add_value(proc->module, e, v);
-#endif
- return v;
-}
-
-
-
-////////////////////////////////////////////////////////////////
-//
-// @Debug
-//
-////////////////////////////////////////////////////////////////
-
-ssaDebugInfo *ssa_add_debug_info_file(ssaProcedure *proc, AstFile *file) {
- if (!proc->module->generate_debug_info) {
- return NULL;
- }
-
- GB_ASSERT(file != NULL);
- ssaDebugInfo *di = ssa_alloc_debug_info(proc->module->allocator, ssaDebugInfo_File);
- di->File.file = file;
-
- String filename = file->tokenizer.fullpath;
- String directory = filename;
- isize slash_index = 0;
- for (isize i = filename.len-1; i >= 0; i--) {
- if (filename.text[i] == '\\' ||
- filename.text[i] == '/') {
- break;
- }
- slash_index = i;
- }
- directory.len = slash_index-1;
- filename.text = filename.text + slash_index;
- filename.len -= slash_index;
-
-
- di->File.filename = filename;
- di->File.directory = directory;
-
- map_ssa_debug_info_set(&proc->module->debug_info, hash_pointer(file), di);
- return di;
-}
-
-
-ssaDebugInfo *ssa_add_debug_info_proc(ssaProcedure *proc, Entity *entity, String name, ssaDebugInfo *file) {
- if (!proc->module->generate_debug_info) {
- return NULL;
- }
-
- GB_ASSERT(entity != NULL);
- ssaDebugInfo *di = ssa_alloc_debug_info(proc->module->allocator, ssaDebugInfo_Proc);
- di->Proc.entity = entity;
- di->Proc.name = name;
- di->Proc.file = file;
- di->Proc.pos = entity->token.pos;
-
- map_ssa_debug_info_set(&proc->module->debug_info, hash_pointer(entity), di);
- return di;
-}
-
-////////////////////////////////////////////////////////////////
-//
-// @Emit
-//
-////////////////////////////////////////////////////////////////
-
-
-ssaValue *ssa_emit(ssaProcedure *proc, ssaValue *instr) {
- GB_ASSERT(instr->kind == ssaValue_Instr);
- ssaBlock *b = proc->curr_block;
- instr->Instr.parent = b;
- if (b != NULL) {
- ssaInstr *i = ssa_get_last_instr(b);
- if (!ssa_is_instr_terminating(i)) {
- array_add(&b->instrs, instr);
- }
- }
- return instr;
-}
-ssaValue *ssa_emit_store(ssaProcedure *p, ssaValue *address, ssaValue *value) {
- return ssa_emit(p, ssa_make_instr_store(p, address, value));
-}
-ssaValue *ssa_emit_load(ssaProcedure *p, ssaValue *address) {
- return ssa_emit(p, ssa_make_instr_load(p, address));
-}
-ssaValue *ssa_emit_select(ssaProcedure *p, ssaValue *cond, ssaValue *t, ssaValue *f) {
- return ssa_emit(p, ssa_make_instr_select(p, cond, t, f));
-}
-
-ssaValue *ssa_emit_zero_init(ssaProcedure *p, ssaValue *address) {
- return ssa_emit(p, ssa_make_instr_zero_init(p, address));
-}
-
-ssaValue *ssa_emit_comment(ssaProcedure *p, String text) {
- return ssa_emit(p, ssa_make_instr_comment(p, text));
-}
-
-
-ssaValue *ssa_emit_call(ssaProcedure *p, ssaValue *value, ssaValue **args, isize arg_count) {
- Type *pt = base_type(ssa_type(value));
- GB_ASSERT(pt->kind == Type_Proc);
- Type *results = pt->Proc.results;
- return ssa_emit(p, ssa_make_instr_call(p, value, args, arg_count, results));
-}
-
-ssaValue *ssa_emit_global_call(ssaProcedure *proc, char *name_, ssaValue **args, isize arg_count) {
- String name = make_string_c(name_);
- ssaValue **found = map_ssa_value_get(&proc->module->members, hash_string(name));
- GB_ASSERT_MSG(found != NULL, "%.*s", LIT(name));
- ssaValue *gp = *found;
- return ssa_emit_call(proc, gp, args, arg_count);
-}
-
-
-
-void ssa_emit_defer_stmts(ssaProcedure *proc, ssaDeferExitKind kind, ssaBlock *block) {
- isize count = proc->defer_stmts.count;
- isize i = count;
- while (i --> 0) {
- ssaDefer d = proc->defer_stmts.e[i];
- if (kind == ssaDeferExit_Default) {
- if (proc->scope_index == d.scope_index &&
- d.scope_index > 1) {
- ssa_build_defer_stmt(proc, d);
- array_pop(&proc->defer_stmts);
- continue;
- } else {
- break;
- }
- } else if (kind == ssaDeferExit_Return) {
- ssa_build_defer_stmt(proc, d);
- } else if (kind == ssaDeferExit_Branch) {
- GB_ASSERT(block != NULL);
- isize lower_limit = block->scope_index+1;
- if (lower_limit < d.scope_index) {
- ssa_build_defer_stmt(proc, d);
- }
- }
- }
-}
-
-
-void ssa_open_scope(ssaProcedure *proc) {
- proc->scope_index++;
-}
-
-void ssa_close_scope(ssaProcedure *proc, ssaDeferExitKind kind, ssaBlock *block) {
- ssa_emit_defer_stmts(proc, kind, block);
- GB_ASSERT(proc->scope_index > 0);
- proc->scope_index--;
-}
-
-
-
-void ssa_emit_unreachable(ssaProcedure *proc) {
- ssa_emit(proc, ssa_make_instr_unreachable(proc));
-}
-
-void ssa_emit_return(ssaProcedure *proc, ssaValue *v) {
- ssa_emit_defer_stmts(proc, ssaDeferExit_Return, NULL);
- ssa_emit(proc, ssa_make_instr_return(proc, v));
-}
-
-void ssa_emit_jump(ssaProcedure *proc, ssaBlock *target_block) {
- ssaBlock *b = proc->curr_block;
- if (b == NULL) {
- return;
- }
- ssa_emit(proc, ssa_make_instr_jump(proc, target_block));
- ssa_add_edge(b, target_block);
- proc->curr_block = NULL;
-}
-
-void ssa_emit_if(ssaProcedure *proc, ssaValue *cond, ssaBlock *true_block, ssaBlock *false_block) {
- ssaBlock *b = proc->curr_block;
- if (b == NULL) {
- return;
- }
- ssa_emit(proc, ssa_make_instr_if(proc, cond, true_block, false_block));
- ssa_add_edge(b, true_block);
- ssa_add_edge(b, false_block);
- proc->curr_block = NULL;
-}
-
-void ssa_emit_startup_runtime(ssaProcedure *proc) {
- GB_ASSERT(proc->parent == NULL && str_eq(proc->name, str_lit("main")));
- ssa_emit(proc, ssa_alloc_instr(proc, ssaInstr_StartupRuntime));
-}
-
-
-
-
-ssaValue *ssa_addr_store(ssaProcedure *proc, ssaAddr addr, ssaValue *value) {
- if (addr.addr == NULL) {
- return NULL;
- }
-
- if (addr.kind == ssaAddr_Vector) {
- ssaValue *v = ssa_emit_load(proc, addr.addr);
- Type *elem_type = base_type(ssa_type(v))->Vector.elem;
- ssaValue *elem = ssa_emit_conv(proc, value, elem_type);
- ssaValue *out = ssa_emit(proc, ssa_make_instr_insert_element(proc, v, elem, addr.Vector.index));
- return ssa_emit_store(proc, addr.addr, out);
- } else {
- ssaValue *v = ssa_emit_conv(proc, value, ssa_addr_type(addr));
- return ssa_emit_store(proc, addr.addr, v);
- }
-}
-ssaValue *ssa_addr_load(ssaProcedure *proc, ssaAddr addr) {
- if (addr.addr == NULL) {
- GB_PANIC("Illegal addr load");
- return NULL;
- }
-
- if (addr.kind == ssaAddr_Vector) {
- ssaValue *v = ssa_emit_load(proc, addr.addr);
- return ssa_emit(proc, ssa_make_instr_extract_element(proc, v, addr.Vector.index));
- }
- Type *t = base_type(ssa_type(addr.addr));
- if (t->kind == Type_Proc) {
- // NOTE(bill): Imported procedures don't require a load as they are pointers
- return addr.addr;
- }
- return ssa_emit_load(proc, addr.addr);
-}
-
-
-
-
-ssaValue *ssa_emit_ptr_offset(ssaProcedure *proc, ssaValue *ptr, ssaValue *offset) {
- offset = ssa_emit_conv(proc, offset, t_int);
- return ssa_emit(proc, ssa_make_instr_ptr_offset(proc, ptr, offset));
-}
-
-ssaValue *ssa_emit_arith(ssaProcedure *proc, TokenKind op, ssaValue *left, ssaValue *right, Type *type) {
- Type *t_left = ssa_type(left);
- Type *t_right = ssa_type(right);
-
- if (op == Token_Add) {
- if (is_type_pointer(t_left)) {
- ssaValue *ptr = ssa_emit_conv(proc, left, type);
- ssaValue *offset = right;
- return ssa_emit_ptr_offset(proc, ptr, offset);
- } else if (is_type_pointer(ssa_type(right))) {
- ssaValue *ptr = ssa_emit_conv(proc, right, type);
- ssaValue *offset = left;
- return ssa_emit_ptr_offset(proc, ptr, offset);
- }
- } else if (op == Token_Sub) {
- if (is_type_pointer(t_left) && is_type_integer(t_right)) {
- // ptr - int
- ssaValue *ptr = ssa_emit_conv(proc, left, type);
- ssaValue *offset = right;
- return ssa_emit_ptr_offset(proc, ptr, offset);
- } else if (is_type_pointer(t_left) && is_type_pointer(t_right)) {
- GB_ASSERT(is_type_integer(type));
- Type *ptr_type = t_left;
- ssaModule *m = proc->module;
- ssaValue *x = ssa_emit_conv(proc, left, type);
- ssaValue *y = ssa_emit_conv(proc, right, type);
- ssaValue *diff = ssa_emit_arith(proc, op, x, y, type);
- ssaValue *elem_size = ssa_make_const_int(m->allocator, type_size_of(m->sizes, m->allocator, ptr_type));
- return ssa_emit_arith(proc, Token_Quo, diff, elem_size, type);
- }
- }
-
-
- switch (op) {
- case Token_AndNot: {
- // NOTE(bill): x &~ y == x & (~y) == x & (y ~ -1)
- // NOTE(bill): "not" `x` == `x` "xor" `-1`
- ssaValue *neg = ssa_add_module_constant(proc->module, type, make_exact_value_integer(-1));
- op = Token_Xor;
- right = ssa_emit_arith(proc, op, right, neg, type);
- GB_ASSERT(right->Instr.kind == ssaInstr_BinaryOp);
- right->Instr.BinaryOp.type = type;
- op = Token_And;
- } /* fallthrough */
- case Token_Add:
- case Token_Sub:
- case Token_Mul:
- case Token_Quo:
- case Token_Mod:
- case Token_And:
- case Token_Or:
- case Token_Xor:
- case Token_Shl:
- case Token_Shr:
- left = ssa_emit_conv(proc, left, type);
- right = ssa_emit_conv(proc, right, type);
- break;
- }
-
- return ssa_emit(proc, ssa_make_instr_binary_op(proc, op, left, right, type));
-}
-
-ssaValue *ssa_emit_comp(ssaProcedure *proc, TokenKind op_kind, ssaValue *left, ssaValue *right) {
- Type *a = base_type(ssa_type(left));
- Type *b = base_type(ssa_type(right));
-
- GB_ASSERT(gb_is_between(op_kind, Token__ComparisonBegin+1, Token__ComparisonEnd-1));
-
- if (are_types_identical(a, b)) {
- // NOTE(bill): No need for a conversion
- } else if (left->kind == ssaValue_Constant || left->kind == ssaValue_Nil) {
- left = ssa_emit_conv(proc, left, ssa_type(right));
- } else if (right->kind == ssaValue_Constant || right->kind == ssaValue_Nil) {
- right = ssa_emit_conv(proc, right, ssa_type(left));
- }
-
- Type *result = t_bool;
- if (is_type_vector(a)) {
- result = make_type_vector(proc->module->allocator, t_bool, a->Vector.count);
- }
- return ssa_emit(proc, ssa_make_instr_binary_op(proc, op_kind, left, right, result));
-}
-
-ssaValue *ssa_emit_array_ep(ssaProcedure *proc, ssaValue *s, ssaValue *index) {
- GB_ASSERT(index != NULL);
- Type *st = base_type(type_deref(ssa_type(s)));
- GB_ASSERT(is_type_array(st) || is_type_vector(st));
-
- // NOTE(bill): For some weird legacy reason in LLVM, structure elements must be accessed as an i32
- index = ssa_emit_conv(proc, index, t_i32);
- return ssa_emit(proc, ssa_make_instr_array_element_ptr(proc, s, index));
-}
-
-ssaValue *ssa_emit_array_epi(ssaProcedure *proc, ssaValue *s, i32 index) {
- return ssa_emit_array_ep(proc, s, ssa_make_const_i32(proc->module->allocator, index));
-}
-
-ssaValue *ssa_emit_union_tag_ptr(ssaProcedure *proc, ssaValue *u) {
- Type *t = ssa_type(u);
- GB_ASSERT(is_type_pointer(t) &&
- is_type_union(type_deref(t)));
- GB_ASSERT(are_types_identical(t, ssa_type(u)));
- return ssa_emit(proc, ssa_make_instr_union_tag_ptr(proc, u));
-}
-
-ssaValue *ssa_emit_union_tag_value(ssaProcedure *proc, ssaValue *u) {
- Type *t = ssa_type(u);
- GB_ASSERT(is_type_union(t));
- GB_ASSERT(are_types_identical(t, ssa_type(u)));
- return ssa_emit(proc, ssa_make_instr_union_tag_value(proc, u));
-}
-
-
-
-ssaValue *ssa_emit_struct_ep(ssaProcedure *proc, ssaValue *s, i32 index) {
- gbAllocator a = proc->module->allocator;
- Type *t = base_type(type_deref(ssa_type(s)));
- Type *result_type = NULL;
- ssaValue *gep = NULL;
-
- if (is_type_struct(t)) {
- GB_ASSERT(t->Record.field_count > 0);
- GB_ASSERT(gb_is_between(index, 0, t->Record.field_count-1));
- result_type = make_type_pointer(a, t->Record.fields[index]->type);
- } else if (is_type_tuple(t)) {
- GB_ASSERT(t->Tuple.variable_count > 0);
- GB_ASSERT(gb_is_between(index, 0, t->Tuple.variable_count-1));
- result_type = make_type_pointer(a, t->Tuple.variables[index]->type);
- } else if (is_type_slice(t)) {
- switch (index) {
- case 0: result_type = make_type_pointer(a, make_type_pointer(a, t->Slice.elem)); break;
- case 1: result_type = make_type_pointer(a, t_int); break;
- case 2: result_type = make_type_pointer(a, t_int); break;
- }
- } else if (is_type_string(t)) {
- switch (index) {
- case 0: result_type = make_type_pointer(a, t_u8_ptr); break;
- case 1: result_type = make_type_pointer(a, t_int); break;
- }
- } else if (is_type_any(t)) {
- switch (index) {
- case 0: result_type = make_type_pointer(a, t_type_info_ptr); break;
- case 1: result_type = make_type_pointer(a, t_rawptr); break;
- }
- } else if (is_type_maybe(t)) {
- switch (index) {
- case 0: result_type = make_type_pointer(a, t->Maybe.elem); break;
- case 1: result_type = make_type_pointer(a, t_bool); break;
- }
- } else {
- GB_PANIC("TODO(bill): struct_gep type: %s, %d", type_to_string(ssa_type(s)), index);
- }
-
- GB_ASSERT(result_type != NULL);
-
- gep = ssa_make_instr_struct_element_ptr(proc, s, index, result_type);
- return ssa_emit(proc, gep);
-}
-
-
-
-ssaValue *ssa_emit_array_ev(ssaProcedure *proc, ssaValue *s, i32 index) {
- Type *st = base_type(ssa_type(s));
- GB_ASSERT(is_type_array(st));
- return ssa_emit(proc, ssa_make_instr_array_extract_value(proc, s, index));
-}
-
-ssaValue *ssa_emit_struct_ev(ssaProcedure *proc, ssaValue *s, i32 index) {
- // NOTE(bill): For some weird legacy reason in LLVM, structure elements must be accessed as an i32
-
- gbAllocator a = proc->module->allocator;
- Type *t = base_type(ssa_type(s));
- Type *result_type = NULL;
-
- if (is_type_struct(t)) {
- GB_ASSERT(t->Record.field_count > 0);
- GB_ASSERT(gb_is_between(index, 0, t->Record.field_count-1));
- result_type = t->Record.fields[index]->type;
- } else if (is_type_tuple(t)) {
- GB_ASSERT(t->Tuple.variable_count > 0);
- GB_ASSERT(gb_is_between(index, 0, t->Tuple.variable_count-1));
- result_type = t->Tuple.variables[index]->type;
- } else if (is_type_slice(t)) {
- switch (index) {
- case 0: result_type = make_type_pointer(a, t->Slice.elem); break;
- case 1: result_type = t_int; break;
- case 2: result_type = t_int; break;
- }
- } else if (is_type_string(t)) {
- switch (index) {
- case 0: result_type = t_u8_ptr; break;
- case 1: result_type = t_int; break;
- }
- } else if (is_type_any(t)) {
- switch (index) {
- case 0: result_type = t_type_info_ptr; break;
- case 1: result_type = t_rawptr; break;
- }
- } else if (is_type_maybe(t)) {
- switch (index) {
- case 0: result_type = t->Maybe.elem; break;
- case 1: result_type = t_bool; break;
- }
- } else {
- GB_PANIC("TODO(bill): struct_ev type: %s, %d", type_to_string(ssa_type(s)), index);
- }
-
- GB_ASSERT(result_type != NULL);
-
- return ssa_emit(proc, ssa_make_instr_struct_extract_value(proc, s, index, result_type));
-}
-
-
-ssaValue *ssa_emit_deep_field_gep(ssaProcedure *proc, Type *type, ssaValue *e, Selection sel) {
- GB_ASSERT(sel.index.count > 0);
-
- for_array(i, sel.index) {
- i32 index = cast(i32)sel.index.e[i];
- if (is_type_pointer(type)) {
- type = type_deref(type);
- e = ssa_emit_load(proc, e);
- e = ssa_emit_ptr_offset(proc, e, v_zero); // TODO(bill): Do I need these copies?
- }
- type = base_type(type);
-
-
- if (is_type_raw_union(type)) {
- type = type->Record.fields[index]->type;
- e = ssa_emit_conv(proc, e, make_type_pointer(proc->module->allocator, type));
- } else if (type->kind == Type_Record) {
- type = type->Record.fields[index]->type;
- e = ssa_emit_struct_ep(proc, e, index);
- } else if (type->kind == Type_Basic) {
- switch (type->Basic.kind) {
- case Basic_any: {
- if (index == 0) {
- type = t_type_info_ptr;
- } else if (index == 1) {
- type = t_rawptr;
- }
- e = ssa_emit_struct_ep(proc, e, index);
- } break;
-
- case Basic_string:
- e = ssa_emit_struct_ep(proc, e, index);
- break;
-
- default:
- GB_PANIC("un-gep-able type");
- break;
- }
- } else if (type->kind == Type_Slice) {
- e = ssa_emit_struct_ep(proc, e, index);
- } else if (type->kind == Type_Vector) {
- e = ssa_emit_array_epi(proc, e, index);
- } else if (type->kind == Type_Array) {
- e = ssa_emit_array_epi(proc, e, index);
- } else {
- GB_PANIC("un-gep-able type");
- }
- }
-
- return e;
-}
-
-
-ssaValue *ssa_emit_deep_field_ev(ssaProcedure *proc, Type *type, ssaValue *e, Selection sel) {
- GB_ASSERT(sel.index.count > 0);
-
- for_array(i, sel.index) {
- i32 index = cast(i32)sel.index.e[i];
- if (is_type_pointer(type)) {
- type = type_deref(type);
- e = ssa_emit_load(proc, e);
- e = ssa_emit_ptr_offset(proc, e, v_zero); // TODO(bill): Do I need these copies?
- }
- type = base_type(type);
-
-
- if (is_type_raw_union(type)) {
- GB_PANIC("TODO(bill): IS THIS EVEN CORRECT?");
- type = type->Record.fields[index]->type;
- e = ssa_emit_conv(proc, e, type);
- } else {
- e = ssa_emit_struct_ev(proc, e, index);
- }
- }
-
- return e;
-}
-
-
-
-
-ssaValue *ssa_array_elem(ssaProcedure *proc, ssaValue *array) {
- return ssa_emit_array_ep(proc, array, v_zero32);
-}
-ssaValue *ssa_array_len(ssaProcedure *proc, ssaValue *array) {
- Type *t = ssa_type(array);
- GB_ASSERT(t->kind == Type_Array);
- return ssa_make_const_int(proc->module->allocator, t->Array.count);
-}
-ssaValue *ssa_array_cap(ssaProcedure *proc, ssaValue *array) {
- return ssa_array_len(proc, array);
-}
-
-ssaValue *ssa_slice_elem(ssaProcedure *proc, ssaValue *slice) {
- Type *t = ssa_type(slice);
- GB_ASSERT(t->kind == Type_Slice);
- return ssa_emit_struct_ev(proc, slice, 0);
-}
-ssaValue *ssa_slice_len(ssaProcedure *proc, ssaValue *slice) {
- Type *t = ssa_type(slice);
- GB_ASSERT(t->kind == Type_Slice);
- return ssa_emit_struct_ev(proc, slice, 1);
-}
-
-ssaValue *ssa_string_elem(ssaProcedure *proc, ssaValue *string) {
- Type *t = ssa_type(string);
- GB_ASSERT(t->kind == Type_Basic && t->Basic.kind == Basic_string);
- return ssa_emit_struct_ev(proc, string, 0);
-}
-ssaValue *ssa_string_len(ssaProcedure *proc, ssaValue *string) {
- Type *t = ssa_type(string);
- GB_ASSERT_MSG(t->kind == Type_Basic && t->Basic.kind == Basic_string, "%s", type_to_string(t));
- return ssa_emit_struct_ev(proc, string, 1);
-}
-
-
-
-ssaValue *ssa_add_local_slice(ssaProcedure *proc, Type *slice_type, ssaValue *base, ssaValue *low, ssaValue *high) {
- // TODO(bill): array bounds checking for slice creation
- // TODO(bill): check that low < high <= max
- gbAllocator a = proc->module->allocator;
- Type *bt = base_type(ssa_type(base));
-
- if (low == NULL) {
- low = v_zero;
- }
- if (high == NULL) {
- switch (bt->kind) {
- case Type_Array: high = ssa_array_len(proc, base); break;
- case Type_Slice: high = ssa_slice_len(proc, base); break;
- case Type_Pointer: high = v_one; break;
- }
- }
-
- ssaValue *len = ssa_emit_arith(proc, Token_Sub, high, low, t_int);
-
- ssaValue *elem = NULL;
- switch (bt->kind) {
- case Type_Array: elem = ssa_array_elem(proc, base); break;
- case Type_Slice: elem = ssa_slice_elem(proc, base); break;
- case Type_Pointer: elem = ssa_emit_load(proc, base); break;
- }
-
- elem = ssa_emit_ptr_offset(proc, elem, low);
-
- ssaValue *slice = ssa_add_local_generated(proc, slice_type);
-
- ssaValue *gep = NULL;
- gep = ssa_emit_struct_ep(proc, slice, 0);
- ssa_emit_store(proc, gep, elem);
-
- gep = ssa_emit_struct_ep(proc, slice, 1);
- ssa_emit_store(proc, gep, len);
-
- return slice;
-}
-
-ssaValue *ssa_emit_string(ssaProcedure *proc, ssaValue *elem, ssaValue *len) {
- ssaValue *str = ssa_add_local_generated(proc, t_string);
- ssaValue *str_elem = ssa_emit_struct_ep(proc, str, 0);
- ssaValue *str_len = ssa_emit_struct_ep(proc, str, 1);
- ssa_emit_store(proc, str_elem, elem);
- ssa_emit_store(proc, str_len, len);
- return ssa_emit_load(proc, str);
-}
-
-
-
-
-String lookup_polymorphic_field(CheckerInfo *info, Type *dst, Type *src) {
- Type *prev_src = src;
- // Type *prev_dst = dst;
- src = base_type(type_deref(src));
- // dst = base_type(type_deref(dst));
- bool src_is_ptr = src != prev_src;
- // bool dst_is_ptr = dst != prev_dst;
-
- GB_ASSERT(is_type_struct(src));
- for (isize i = 0; i < src->Record.field_count; i++) {
- Entity *f = src->Record.fields[i];
- if (f->kind == Entity_Variable && f->flags & EntityFlag_Anonymous) {
- if (are_types_identical(dst, f->type)) {
- return f->token.string;
- }
- if (src_is_ptr && is_type_pointer(dst)) {
- if (are_types_identical(type_deref(dst), f->type)) {
- return f->token.string;
- }
- }
- if (is_type_struct(f->type)) {
- String name = lookup_polymorphic_field(info, dst, f->type);
- if (name.len > 0) {
- return name;
- }
- }
- }
- }
- return str_lit("");
-}
-
-ssaValue *ssa_emit_bitcast(ssaProcedure *proc, ssaValue *data, Type *type) {
- return ssa_emit(proc, ssa_make_instr_conv(proc, ssaConv_bitcast, data, ssa_type(data), type));
-}
-
-
-ssaValue *ssa_emit_conv(ssaProcedure *proc, ssaValue *value, Type *t) {
- Type *src_type = ssa_type(value);
- if (are_types_identical(t, src_type)) {
- return value;
- }
-
- Type *src = base_type(base_enum_type(src_type));
- Type *dst = base_type(base_enum_type(t));
-
- if (value->kind == ssaValue_Constant) {
- if (is_type_any(dst)) {
- ssaValue *default_value = ssa_add_local_generated(proc, default_type(src_type));
- ssa_emit_store(proc, default_value, value);
- return ssa_emit_conv(proc, ssa_emit_load(proc, default_value), t_any);
- } else if (dst->kind == Type_Basic) {
- ExactValue ev = value->Constant.value;
- if (is_type_float(dst)) {
- ev = exact_value_to_float(ev);
- } else if (is_type_string(dst)) {
- // Handled elsewhere
- GB_ASSERT(ev.kind == ExactValue_String);
- } else if (is_type_integer(dst)) {
- ev = exact_value_to_integer(ev);
- } else if (is_type_pointer(dst)) {
- // IMPORTANT NOTE(bill): LLVM doesn't support pointer constants expect `null`
- ssaValue *i = ssa_add_module_constant(proc->module, t_uint, ev);
- return ssa_emit(proc, ssa_make_instr_conv(proc, ssaConv_inttoptr, i, t_uint, dst));
- }
- return ssa_add_module_constant(proc->module, t, ev);
- }
- }
-
- if (are_types_identical(src, dst)) {
- return value;
- }
-
- if (is_type_maybe(dst)) {
- ssaValue *maybe = ssa_add_local_generated(proc, dst);
- ssaValue *val = ssa_emit_struct_ep(proc, maybe, 0);
- ssaValue *set = ssa_emit_struct_ep(proc, maybe, 1);
- ssa_emit_store(proc, val, value);
- ssa_emit_store(proc, set, v_true);
- return ssa_emit_load(proc, maybe);
- }
-
- // integer -> integer
- if (is_type_integer(src) && is_type_integer(dst)) {
- GB_ASSERT(src->kind == Type_Basic &&
- dst->kind == Type_Basic);
- i64 sz = type_size_of(proc->module->sizes, proc->module->allocator, src);
- i64 dz = type_size_of(proc->module->sizes, proc->module->allocator, dst);
- if (sz == dz) {
- // NOTE(bill): In LLVM, all integers are signed and rely upon 2's compliment
- return value;
- }
-
- ssaConvKind kind = ssaConv_trunc;
- if (dz >= sz) {
- kind = ssaConv_zext;
- }
- return ssa_emit(proc, ssa_make_instr_conv(proc, kind, value, src, dst));
- }
-
- // boolean -> integer
- if (is_type_boolean(src) && is_type_integer(dst)) {
- return ssa_emit(proc, ssa_make_instr_conv(proc, ssaConv_zext, value, src, dst));
- }
-
- // integer -> boolean
- if (is_type_integer(src) && is_type_boolean(dst)) {
- return ssa_emit_comp(proc, Token_NotEq, value, v_zero);
- }
-
-
- // float -> float
- if (is_type_float(src) && is_type_float(dst)) {
- i64 sz = type_size_of(proc->module->sizes, proc->module->allocator, src);
- i64 dz = type_size_of(proc->module->sizes, proc->module->allocator, dst);
- ssaConvKind kind = ssaConv_fptrunc;
- if (dz >= sz) {
- kind = ssaConv_fpext;
- }
- return ssa_emit(proc, ssa_make_instr_conv(proc, kind, value, src, dst));
- }
-
- // float <-> integer
- if (is_type_float(src) && is_type_integer(dst)) {
- ssaConvKind kind = ssaConv_fptosi;
- if (is_type_unsigned(dst)) {
- kind = ssaConv_fptoui;
- }
- return ssa_emit(proc, ssa_make_instr_conv(proc, kind, value, src, dst));
- }
- if (is_type_integer(src) && is_type_float(dst)) {
- ssaConvKind kind = ssaConv_sitofp;
- if (is_type_unsigned(src)) {
- kind = ssaConv_uitofp;
- }
- return ssa_emit(proc, ssa_make_instr_conv(proc, kind, value, src, dst));
- }
-
- // Pointer <-> int
- if (is_type_pointer(src) && is_type_int_or_uint(dst)) {
- return ssa_emit(proc, ssa_make_instr_conv(proc, ssaConv_ptrtoint, value, src, dst));
- }
- if (is_type_int_or_uint(src) && is_type_pointer(dst)) {
- return ssa_emit(proc, ssa_make_instr_conv(proc, ssaConv_inttoptr, value, src, dst));
- }
-
- if (is_type_union(dst)) {
- for (isize i = 0; i < dst->Record.field_count; i++) {
- Entity *f = dst->Record.fields[i];
- if (are_types_identical(f->type, src_type)) {
- ssa_emit_comment(proc, str_lit("union - child to parent"));
- gbAllocator allocator = proc->module->allocator;
- ssaValue *parent = ssa_add_local_generated(proc, t);
- ssaValue *tag = ssa_make_const_int(allocator, i);
- ssa_emit_store(proc, ssa_emit_union_tag_ptr(proc, parent), tag);
-
- ssaValue *data = ssa_emit_conv(proc, parent, t_rawptr);
-
- Type *tag_type = src_type;
- Type *tag_type_ptr = make_type_pointer(allocator, tag_type);
- ssaValue *underlying = ssa_emit_bitcast(proc, data, tag_type_ptr);
- ssa_emit_store(proc, underlying, value);
-
- return ssa_emit_load(proc, parent);
- }
- }
- }
-
- // NOTE(bill): This has to be done beofre `Pointer <-> Pointer` as it's
- // subtype polymorphism casting
- {
- Type *sb = base_type(type_deref(src));
- bool src_is_ptr = src != sb;
- if (is_type_struct(sb)) {
- String field_name = lookup_polymorphic_field(proc->module->info, t, src);
- // gb_printf("field_name: %.*s\n", LIT(field_name));
- if (field_name.len > 0) {
- // NOTE(bill): It can be casted
- Selection sel = lookup_field(proc->module->allocator, sb, field_name, false);
- if (sel.entity != NULL) {
- ssa_emit_comment(proc, str_lit("cast - polymorphism"));
- if (src_is_ptr) {
- value = ssa_emit_load(proc, value);
- }
- return ssa_emit_deep_field_ev(proc, sb, value, sel);
- }
- }
- }
- }
-
-
-
- // Pointer <-> Pointer
- if (is_type_pointer(src) && is_type_pointer(dst)) {
- return ssa_emit_bitcast(proc, value, dst);
- }
-
-
-
- // proc <-> proc
- if (is_type_proc(src) && is_type_proc(dst)) {
- return ssa_emit_bitcast(proc, value, dst);
- }
-
- // pointer -> proc
- if (is_type_pointer(src) && is_type_proc(dst)) {
- return ssa_emit_bitcast(proc, value, dst);
- }
- // proc -> pointer
- if (is_type_proc(src) && is_type_pointer(dst)) {
- return ssa_emit_bitcast(proc, value, dst);
- }
-
-
-
- // []byte/[]u8 <-> string
- if (is_type_u8_slice(src) && is_type_string(dst)) {
- ssaValue *elem = ssa_slice_elem(proc, value);
- ssaValue *len = ssa_slice_len(proc, value);
- return ssa_emit_string(proc, elem, len);
- }
- if (is_type_string(src) && is_type_u8_slice(dst)) {
- ssaValue *elem = ssa_string_elem(proc, value);
- ssaValue *elem_ptr = ssa_add_local_generated(proc, ssa_type(elem));
- ssa_emit_store(proc, elem_ptr, elem);
-
- ssaValue *len = ssa_string_len(proc, value);
- ssaValue *slice = ssa_add_local_slice(proc, dst, elem_ptr, v_zero, len);
- return ssa_emit_load(proc, slice);
- }
-
- if (is_type_vector(dst)) {
- Type *dst_elem = dst->Vector.elem;
- value = ssa_emit_conv(proc, value, dst_elem);
- ssaValue *v = ssa_add_local_generated(proc, t);
- v = ssa_emit_load(proc, v);
- v = ssa_emit(proc, ssa_make_instr_insert_element(proc, v, value, v_zero32));
- // NOTE(bill): Broadcast lowest value to all values
- isize index_count = dst->Vector.count;
- i32 *indices = gb_alloc_array(proc->module->allocator, i32, index_count);
- for (isize i = 0; i < index_count; i++) {
- indices[i] = 0;
- }
-
- v = ssa_emit(proc, ssa_make_instr_vector_shuffle(proc, v, indices, index_count));
- return v;
- }
-
- if (is_type_any(dst)) {
- ssaValue *result = ssa_add_local_generated(proc, t_any);
-
- if (is_type_untyped_nil(src)) {
- return ssa_emit_load(proc, result);
- }
-
- ssaValue *data = NULL;
- if (value->kind == ssaValue_Instr &&
- value->Instr.kind == ssaInstr_Load) {
- // NOTE(bill): Addressable value
- data = value->Instr.Load.address;
- } else {
- // NOTE(bill): Non-addressable value
- data = ssa_add_local_generated(proc, src_type);
- ssa_emit_store(proc, data, value);
- }
- GB_ASSERT(is_type_pointer(ssa_type(data)));
- GB_ASSERT(is_type_typed(src_type));
- data = ssa_emit_conv(proc, data, t_rawptr);
-
-
- ssaValue *ti = ssa_type_info(proc, src_type);
-
- ssaValue *gep0 = ssa_emit_struct_ep(proc, result, 0);
- ssaValue *gep1 = ssa_emit_struct_ep(proc, result, 1);
- ssa_emit_store(proc, gep0, ti);
- ssa_emit_store(proc, gep1, data);
-
- return ssa_emit_load(proc, result);
- }
-
- if (is_type_untyped_nil(src) && type_has_nil(dst)) {
- return ssa_make_value_nil(proc->module->allocator, t);
- }
-
-
- gb_printf_err("ssa_emit_conv: src -> dst\n");
- gb_printf_err("Not Identical %s != %s\n", type_to_string(src_type), type_to_string(t));
- gb_printf_err("Not Identical %s != %s\n", type_to_string(src), type_to_string(dst));
-
-
- GB_PANIC("Invalid type conversion: `%s` to `%s`", type_to_string(src_type), type_to_string(t));
-
- return NULL;
-}
-
-bool ssa_is_type_aggregate(Type *t) {
- t = base_type(t);
- switch (t->kind) {
- case Type_Basic:
- switch (t->Basic.kind) {
- case Basic_string:
- case Basic_any:
- return true;
- }
- break;
-
- case Type_Pointer:
- case Type_Vector:
- return false;
-
- case Type_Array:
- case Type_Slice:
- case Type_Maybe:
- case Type_Record:
- case Type_Tuple:
- return true;
-
- case Type_Named:
- return ssa_is_type_aggregate(t->Named.base);
- }
-
- return false;
-}
-
-ssaValue *ssa_emit_transmute(ssaProcedure *proc, ssaValue *value, Type *t) {
- Type *src_type = ssa_type(value);
- if (are_types_identical(t, src_type)) {
- return value;
- }
-
- Type *src = base_type(src_type);
- Type *dst = base_type(t);
- if (are_types_identical(t, src_type)) {
- return value;
- }
-
- ssaModule *m = proc->module;
-
- i64 sz = type_size_of(m->sizes, m->allocator, src);
- i64 dz = type_size_of(m->sizes, m->allocator, dst);
-
- GB_ASSERT_MSG(sz == dz, "Invalid transmute conversion: `%s` to `%s`", type_to_string(src_type), type_to_string(t));
-
- if (ssa_is_type_aggregate(src) || ssa_is_type_aggregate(dst)) {
- ssaValue *s = ssa_add_local_generated(proc, src);
- ssa_emit_store(proc, s, value);
-
- ssaValue *d = ssa_emit_bitcast(proc, s, make_type_pointer(m->allocator, dst));
- return ssa_emit_load(proc, d);
- }
-
- // TODO(bill): Actually figure out what the conversion needs to be correctly 'cause LLVM
-
- return ssa_emit_bitcast(proc, value, dst);
-}
-
-ssaValue *ssa_emit_down_cast(ssaProcedure *proc, ssaValue *value, Type *t) {
- GB_ASSERT(is_type_pointer(ssa_type(value)));
- gbAllocator allocator = proc->module->allocator;
-
- String field_name = check_down_cast_name(t, type_deref(ssa_type(value)));
- GB_ASSERT(field_name.len > 0);
- Selection sel = lookup_field(proc->module->allocator, t, field_name, false);
- ssaValue *bytes = ssa_emit_conv(proc, value, t_u8_ptr);
-
- i64 offset_ = type_offset_of_from_selection(proc->module->sizes, allocator, type_deref(t), sel);
- ssaValue *offset = ssa_make_const_int(allocator, -offset_);
- ssaValue *head = ssa_emit_ptr_offset(proc, bytes, offset);
- return ssa_emit_conv(proc, head, t);
-}
-
-ssaValue *ssa_emit_union_cast(ssaProcedure *proc, ssaValue *value, Type *tuple) {
- GB_ASSERT(tuple->kind == Type_Tuple);
- gbAllocator a = proc->module->allocator;
-
- Type *src_type = ssa_type(value);
- bool is_ptr = is_type_pointer(src_type);
-
- ssaValue *v = ssa_add_local_generated(proc, tuple);
-
- if (is_ptr) {
- Type *src = base_type(type_deref(src_type));
- Type *src_ptr = src_type;
- GB_ASSERT(is_type_union(src));
- Type *dst_ptr = tuple->Tuple.variables[0]->type;
- Type *dst = type_deref(dst_ptr);
-
- ssaValue *tag = ssa_emit_load(proc, ssa_emit_union_tag_ptr(proc, value));
- ssaValue *dst_tag = NULL;
- for (isize i = 1; i < src->Record.field_count; i++) {
- Entity *f = src->Record.fields[i];
- if (are_types_identical(f->type, dst)) {
- dst_tag = ssa_make_const_int(a, i);
- break;
- }
- }
- GB_ASSERT(dst_tag != NULL);
-
- ssaBlock *ok_block = ssa_add_block(proc, NULL, "union_cast.ok");
- ssaBlock *end_block = ssa_add_block(proc, NULL, "union_cast.end");
- ssaValue *cond = ssa_emit_comp(proc, Token_CmpEq, tag, dst_tag);
- ssa_emit_if(proc, cond, ok_block, end_block);
- proc->curr_block = ok_block;
-
- ssaValue *gep0 = ssa_emit_struct_ep(proc, v, 0);
- ssaValue *gep1 = ssa_emit_struct_ep(proc, v, 1);
-
- ssaValue *data = ssa_emit_conv(proc, value, dst_ptr);
- ssa_emit_store(proc, gep0, data);
- ssa_emit_store(proc, gep1, v_true);
-
- ssa_emit_jump(proc, end_block);
- proc->curr_block = end_block;
-
- } else {
- Type *src = base_type(src_type);
- GB_ASSERT(is_type_union(src));
- Type *dst = tuple->Tuple.variables[0]->type;
- Type *dst_ptr = make_type_pointer(a, dst);
-
- ssaValue *tag = ssa_emit_union_tag_value(proc, value);
- ssaValue *dst_tag = NULL;
- for (isize i = 1; i < src->Record.field_count; i++) {
- Entity *f = src->Record.fields[i];
- if (are_types_identical(f->type, dst)) {
- dst_tag = ssa_make_const_int(a, i);
- break;
- }
- }
- GB_ASSERT(dst_tag != NULL);
-
- // HACK(bill): This is probably not very efficient
- ssaValue *union_copy = ssa_add_local_generated(proc, src_type);
- ssa_emit_store(proc, union_copy, value);
-
- ssaBlock *ok_block = ssa_add_block(proc, NULL, "union_cast.ok");
- ssaBlock *end_block = ssa_add_block(proc, NULL, "union_cast.end");
- ssaValue *cond = ssa_emit_comp(proc, Token_CmpEq, tag, dst_tag);
- ssa_emit_if(proc, cond, ok_block, end_block);
- proc->curr_block = ok_block;
-
- ssaValue *gep0 = ssa_emit_struct_ep(proc, v, 0);
- ssaValue *gep1 = ssa_emit_struct_ep(proc, v, 1);
-
- ssaValue *data = ssa_emit_load(proc, ssa_emit_conv(proc, union_copy, dst_ptr));
- ssa_emit_store(proc, gep0, data);
- ssa_emit_store(proc, gep1, v_true);
-
- ssa_emit_jump(proc, end_block);
- proc->curr_block = end_block;
-
- }
- return ssa_emit_load(proc, v);
-}
-
-
-isize ssa_type_info_index(CheckerInfo *info, Type *type) {
- type = default_type(type);
-
- isize entry_index = -1;
- HashKey key = hash_pointer(type);
- isize *found_entry_index = map_isize_get(&info->type_info_map, key);
- if (found_entry_index) {
- entry_index = *found_entry_index;
- }
- if (entry_index < 0) {
- // NOTE(bill): Do manual search
- // TODO(bill): This is O(n) and can be very slow
- for_array(i, info->type_info_map.entries){
- MapIsizeEntry *e = &info->type_info_map.entries.e[i];
- Type *prev_type = cast(Type *)e->key.ptr;
- if (are_types_identical(prev_type, type)) {
- entry_index = e->value;
- // NOTE(bill): Add it to the search map
- map_isize_set(&info->type_info_map, key, entry_index);
- break;
- }
- }
- }
-
- if (entry_index < 0) {
- compiler_error("Type_Info for `%s` could not be found", type_to_string(type));
- }
- return entry_index;
-}
-
-ssaValue *ssa_type_info(ssaProcedure *proc, Type *type) {
- ssaValue **found = map_ssa_value_get(&proc->module->members, hash_string(str_lit(SSA_TYPE_INFO_DATA_NAME)));
- GB_ASSERT(found != NULL);
- ssaValue *type_info_data = *found;
- CheckerInfo *info = proc->module->info;
-
- type = default_type(type);
-
- i32 entry_index = ssa_type_info_index(info, type);
-
- // gb_printf_err("%d %s\n", entry_index, type_to_string(type));
-
- return ssa_emit_array_ep(proc, type_info_data, ssa_make_const_i32(proc->module->allocator, entry_index));
-}
-
-
-
-ssaValue *ssa_emit_logical_binary_expr(ssaProcedure *proc, AstNode *expr) {
- ast_node(be, BinaryExpr, expr);
-#if 0
- ssaBlock *true_ = ssa_add_block(proc, NULL, "logical.cmp.true");
- ssaBlock *false_ = ssa_add_block(proc, NULL, "logical.cmp.false");
- ssaBlock *done = ssa_add_block(proc, NULL, "logical.cmp.done");
-
- ssaValue *result = ssa_add_local_generated(proc, t_bool);
- ssa_build_cond(proc, expr, true_, false_);
-
- proc->curr_block = true_;
- ssa_emit_store(proc, result, v_true);
- ssa_emit_jump(proc, done);
-
- proc->curr_block = false_;
- ssa_emit_store(proc, result, v_false);
- ssa_emit_jump(proc, done);
-
- proc->curr_block = done;
-
- return ssa_emit_load(proc, result);
-#else
- ssaBlock *rhs = ssa_add_block(proc, NULL, "logical.cmp.rhs");
- ssaBlock *done = ssa_add_block(proc, NULL, "logical.cmp.done");
-
- Type *type = type_of_expr(proc->module->info, expr);
- type = default_type(type);
-
- ssaValue *short_circuit = NULL;
- if (be->op.kind == Token_CmpAnd) {
- ssa_build_cond(proc, be->left, rhs, done);
- short_circuit = v_false;
- } else if (be->op.kind == Token_CmpOr) {
- ssa_build_cond(proc, be->left, done, rhs);
- short_circuit = v_true;
- }
-
- if (rhs->preds.count == 0) {
- proc->curr_block = done;
- return short_circuit;
- }
-
- if (done->preds.count == 0) {
- proc->curr_block = rhs;
- return ssa_build_expr(proc, be->right);
- }
-
- ssaValueArray edges = {0};
- array_init_reserve(&edges, proc->module->allocator, done->preds.count+1);
- for_array(i, done->preds) {
- array_add(&edges, short_circuit);
- }
-
- proc->curr_block = rhs;
- array_add(&edges, ssa_build_expr(proc, be->right));
- ssa_emit_jump(proc, done);
- proc->curr_block = done;
-
- return ssa_emit(proc, ssa_make_instr_phi(proc, edges, type));
-#endif
-}
-
-
-void ssa_emit_bounds_check(ssaProcedure *proc, Token token, ssaValue *index, ssaValue *len) {
- if ((proc->module->stmt_state_flags & StmtStateFlag_no_bounds_check) != 0) {
- return;
- }
-
- index = ssa_emit_conv(proc, index, t_int);
- len = ssa_emit_conv(proc, len, t_int);
-
- ssa_emit(proc, ssa_make_instr_bounds_check(proc, token.pos, index, len));
-
- // gbAllocator a = proc->module->allocator;
- // ssaValue **args = gb_alloc_array(a, ssaValue *, 5);
- // args[0] = ssa_emit_global_string(proc, token.pos.file);
- // args[1] = ssa_make_const_int(a, token.pos.line);
- // args[2] = ssa_make_const_int(a, token.pos.column);
- // args[3] = ssa_emit_conv(proc, index, t_int);
- // args[4] = ssa_emit_conv(proc, len, t_int);
-
- // ssa_emit_global_call(proc, "__bounds_check_error", args, 5);
-}
-
-void ssa_emit_slice_bounds_check(ssaProcedure *proc, Token token, ssaValue *low, ssaValue *high, bool is_substring) {
- if ((proc->module->stmt_state_flags & StmtStateFlag_no_bounds_check) != 0) {
- return;
- }
-
- low = ssa_emit_conv(proc, low, t_int);
- high = ssa_emit_conv(proc, high, t_int);
-
- ssa_emit(proc, ssa_make_instr_slice_bounds_check(proc, token.pos, low, high, is_substring));
-}
-
-
-////////////////////////////////////////////////////////////////
-//
-// @Build
-//
-////////////////////////////////////////////////////////////////
-
-
-void ssa_push_target_list(ssaProcedure *proc, ssaBlock *break_, ssaBlock *continue_, ssaBlock *fallthrough_) {
- ssaTargetList *tl = gb_alloc_item(proc->module->allocator, ssaTargetList);
- tl->prev = proc->target_list;
- tl->break_ = break_;
- tl->continue_ = continue_;
- tl->fallthrough_ = fallthrough_;
- proc->target_list = tl;
-}
-
-void ssa_pop_target_list(ssaProcedure *proc) {
- proc->target_list = proc->target_list->prev;
-}
-
-
-void ssa_mangle_sub_type_name(ssaModule *m, Entity *field, String parent) {
- if (field->kind != Entity_TypeName) {
- return;
- }
- String cn = field->token.string;
-
- isize len = parent.len + 1 + cn.len;
- String child = {NULL, len};
- child.text = gb_alloc_array(m->allocator, u8, len);
-
- isize i = 0;
- gb_memmove(child.text+i, parent.text, parent.len);
- i += parent.len;
- child.text[i++] = '.';
- gb_memmove(child.text+i, cn.text, cn.len);
-
- map_string_set(&m->type_names, hash_pointer(field->type), child);
- ssa_gen_global_type_name(m, field, child);
-}
-
-void ssa_gen_global_type_name(ssaModule *m, Entity *e, String name) {
- ssaValue *t = ssa_make_value_type_name(m->allocator, name, e->type);
- ssa_module_add_value(m, e, t);
- map_ssa_value_set(&m->members, hash_string(name), t);
-
- if (is_type_union(e->type)) {
- Type *bt = base_type(e->type);
- TypeRecord *s = &bt->Record;
- // NOTE(bill): Zeroth entry is null (for `match type` stmts)
- for (isize j = 1; j < s->field_count; j++) {
- ssa_mangle_sub_type_name(m, s->fields[j], name);
- }
- }
-}
-
-
-
-
-void ssa_build_defer_stmt(ssaProcedure *proc, ssaDefer d) {
- ssaBlock *b = ssa_add_block(proc, NULL, "defer");
- // NOTE(bill): The prev block may defer injection before it's terminator
- ssaInstr *last_instr = ssa_get_last_instr(proc->curr_block);
- if (last_instr == NULL || !ssa_is_instr_terminating(last_instr)) {
- ssa_emit_jump(proc, b);
- }
- proc->curr_block = b;
- ssa_emit_comment(proc, str_lit("defer"));
- if (d.kind == ssaDefer_Node) {
- ssa_build_stmt(proc, d.stmt);
- } else if (d.kind == ssaDefer_Instr) {
- // NOTE(bill): Need to make a new copy
- ssaValue *instr = cast(ssaValue *)gb_alloc_copy(proc->module->allocator, d.instr, gb_size_of(ssaValue));
- ssa_emit(proc, instr);
- }
-}
-
-
-
-ssaValue *ssa_find_global_variable(ssaProcedure *proc, String name) {
- ssaValue **value = map_ssa_value_get(&proc->module->members, hash_string(name));
- GB_ASSERT_MSG(value != NULL, "Unable to find global variable `%.*s`", LIT(name));
- return *value;
-}
-
-ssaValue *ssa_find_implicit_value_backing(ssaProcedure *proc, ImplicitValueId id) {
- Entity *e = proc->module->info->implicit_values[id];
- GB_ASSERT(e->kind == Entity_ImplicitValue);
- Entity *backing = e->ImplicitValue.backing;
- ssaValue **value = map_ssa_value_get(&proc->module->values, hash_pointer(backing));
- GB_ASSERT_MSG(value != NULL, "Unable to find implicit value backing `%.*s`", LIT(backing->token.string));
- return *value;
-}
-
-void ssa_build_stmt_list(ssaProcedure *proc, AstNodeArray stmts);
-
-ssaValue *ssa_build_single_expr(ssaProcedure *proc, AstNode *expr, TypeAndValue *tv) {
- expr = unparen_expr(expr);
- switch (expr->kind) {
- case_ast_node(bl, BasicLit, expr);
- GB_PANIC("Non-constant basic literal");
- case_end;
-
- case_ast_node(i, Ident, expr);
- Entity *e = *map_entity_get(&proc->module->info->uses, hash_pointer(expr));
- if (e->kind == Entity_Builtin) {
- Token token = ast_node_token(expr);
- GB_PANIC("TODO(bill): ssa_build_single_expr Entity_Builtin `%.*s`\n"
- "\t at %.*s(%td:%td)", LIT(builtin_procs[e->Builtin.id].name),
- LIT(token.pos.file), token.pos.line, token.pos.column);
- return NULL;
- } else if (e->kind == Entity_Nil) {
- return ssa_make_value_nil(proc->module->allocator, tv->type);
- } else if (e->kind == Entity_ImplicitValue) {
- return ssa_emit_load(proc, ssa_find_implicit_value_backing(proc, e->ImplicitValue.id));
- }
-
- ssaValue **found = map_ssa_value_get(&proc->module->values, hash_pointer(e));
- if (found) {
- ssaValue *v = *found;
- if (v->kind == ssaValue_Proc) {
- return v;
- }
- // if (e->kind == Entity_Variable && e->Variable.param) {
- // return v;
- // }
- return ssa_emit_load(proc, v);
- } else if (e != NULL && e->kind == Entity_Variable) {
- return ssa_addr_load(proc, ssa_build_addr(proc, expr));
- }
- GB_PANIC("NULL value for expression from identifier: %.*s", LIT(i->string));
- return NULL;
- case_end;
-
- case_ast_node(re, RunExpr, expr);
- // TODO(bill): Run Expression
- return ssa_build_single_expr(proc, re->expr, tv);
- case_end;
-
- case_ast_node(de, DerefExpr, expr);
- return ssa_addr_load(proc, ssa_build_addr(proc, expr));
- case_end;
-
- case_ast_node(se, SelectorExpr, expr);
- TypeAndValue *tav = map_tav_get(&proc->module->info->types, hash_pointer(expr));
- GB_ASSERT(tav != NULL);
- return ssa_addr_load(proc, ssa_build_addr(proc, expr));
- case_end;
-
- case_ast_node(be, BlockExpr, expr);
- ssa_emit_comment(proc, str_lit("BlockExpr"));
- ssa_open_scope(proc);
-
- AstNodeArray stmts = be->stmts;
- stmts.count--;
- ssa_build_stmt_list(proc, stmts);
-
- AstNode *give_stmt = be->stmts.e[be->stmts.count-1];
- GB_ASSERT(give_stmt->kind == AstNode_ExprStmt);
- AstNode *give_expr = give_stmt->ExprStmt.expr;
- GB_ASSERT(give_expr->kind == AstNode_GiveExpr);
- ssaValue *value = ssa_build_expr(proc, give_expr);
-
- ssa_close_scope(proc, ssaDeferExit_Default, NULL);
-
- return value;
- case_end;
-
- case_ast_node(ie, IfExpr, expr);
- ssa_emit_comment(proc, str_lit("IfExpr"));
- if (ie->init != NULL) {
- ssaBlock *init = ssa_add_block(proc, expr, "if.init");
- ssa_emit_jump(proc, init);
- proc->curr_block = init;
- ssa_build_stmt(proc, ie->init);
- }
-
- ssaValueArray edges = {0};
- array_init_reserve(&edges, proc->module->allocator, 2);
-
- GB_ASSERT(ie->else_expr != NULL);
- ssaBlock *then = ssa_add_block(proc, expr, "if.then");
- ssaBlock *done = ssa_add_block(proc, expr, "if.done"); // NOTE(bill): Append later
- ssaBlock *else_ = ssa_add_block(proc, ie->else_expr, "if.else");
-
- ssaValue *cond = ssa_build_cond(proc, ie->cond, then, else_);
- proc->curr_block = then;
-
- ssa_open_scope(proc);
- array_add(&edges, ssa_build_expr(proc, ie->body));
- ssa_close_scope(proc, ssaDeferExit_Default, NULL);
-
- ssa_emit_jump(proc, done);
- proc->curr_block = else_;
-
- ssa_open_scope(proc);
- array_add(&edges, ssa_build_expr(proc, ie->else_expr));
- ssa_close_scope(proc, ssaDeferExit_Default, NULL);
-
- ssa_emit_jump(proc, done);
- proc->curr_block = done;
-
- Type *type = type_of_expr(proc->module->info, expr);
-
- return ssa_emit(proc, ssa_make_instr_phi(proc, edges, type));
- case_end;
-
- case_ast_node(ge, GiveExpr, expr);
- ssa_emit_comment(proc, str_lit("GiveExpr"));
-
- ssaValue *v = NULL;
- Type *give_type = type_of_expr(proc->module->info, expr);
- GB_ASSERT(give_type != NULL);
- if (give_type->kind != Type_Tuple) {
- v = ssa_emit_conv(proc, ssa_build_expr(proc, ge->results.e[0]), give_type);
- } else {
- TypeTuple *tuple = &give_type->Tuple;
- gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&proc->module->tmp_arena);
-
- ssaValueArray results;
- array_init_reserve(&results, proc->module->tmp_allocator, tuple->variable_count);
-
- for_array(res_index, ge->results) {
- ssaValue *res = ssa_build_expr(proc, ge->results.e[res_index]);
- Type *t = ssa_type(res);
- if (t->kind == Type_Tuple) {
- for (isize i = 0; i < t->Tuple.variable_count; i++) {
- Entity *e = t->Tuple.variables[i];
- ssaValue *v = ssa_emit_struct_ev(proc, res, i);
- array_add(&results, v);
- }
- } else {
- array_add(&results, res);
- }
- }
-
- v = ssa_add_local_generated(proc, give_type);
- for_array(i, results) {
- Entity *e = tuple->variables[i];
- ssaValue *res = ssa_emit_conv(proc, results.e[i], e->type);
- ssaValue *field = ssa_emit_struct_ep(proc, v, i);
- ssa_emit_store(proc, field, res);
- }
- v = ssa_emit_load(proc, v);
-
- gb_temp_arena_memory_end(tmp);
- }
-
- return v;
- case_end;
-
- case_ast_node(ue, UnaryExpr, expr);
- switch (ue->op.kind) {
- case Token_Pointer:
- return ssa_emit_ptr_offset(proc, ssa_build_addr(proc, ue->expr).addr, v_zero); // Make a copy of the pointer
-
- case Token_Maybe:
- return ssa_emit_conv(proc, ssa_build_expr(proc, ue->expr), type_of_expr(proc->module->info, expr));
-
- case Token_Add:
- return ssa_build_expr(proc, ue->expr);
-
- case Token_Not: // Boolean not
- case Token_Xor: // Bitwise not
- case Token_Sub: // Bitwise not
- return ssa_emit(proc, ssa_make_instr_unary_op(proc, ue->op.kind, ssa_build_expr(proc, ue->expr), tv->type));
- }
- case_end;
-
- case_ast_node(be, BinaryExpr, expr);
- ssaValue *left = ssa_build_expr(proc, be->left);
- Type *type = default_type(tv->type);
-
- switch (be->op.kind) {
- case Token_Add:
- case Token_Sub:
- case Token_Mul:
- case Token_Quo:
- case Token_Mod:
- case Token_And:
- case Token_Or:
- case Token_Xor:
- case Token_AndNot:
- case Token_Shl:
- case Token_Shr: {
- ssaValue *right = ssa_build_expr(proc, be->right);
- return ssa_emit_arith(proc, be->op.kind, left, right, type);
- }
-
-
- case Token_CmpEq:
- case Token_NotEq:
- case Token_Lt:
- case Token_LtEq:
- case Token_Gt:
- case Token_GtEq: {
- ssaValue *right = ssa_build_expr(proc, be->right);
- ssaValue *cmp = ssa_emit_comp(proc, be->op.kind, left, right);
- return ssa_emit_conv(proc, cmp, type);
- } break;
-
- case Token_CmpAnd:
- case Token_CmpOr:
- return ssa_emit_logical_binary_expr(proc, expr);
-
- case Token_as:
- ssa_emit_comment(proc, str_lit("cast - as"));
- return ssa_emit_conv(proc, left, type);
-
- case Token_transmute:
- ssa_emit_comment(proc, str_lit("cast - transmute"));
- return ssa_emit_transmute(proc, left, type);
-
- case Token_down_cast:
- ssa_emit_comment(proc, str_lit("cast - down_cast"));
- return ssa_emit_down_cast(proc, left, type);
-
- case Token_union_cast:
- ssa_emit_comment(proc, str_lit("cast - union_cast"));
- return ssa_emit_union_cast(proc, left, type);
-
- default:
- GB_PANIC("Invalid binary expression");
- break;
- }
- case_end;
-
- case_ast_node(pl, ProcLit, expr);
- // NOTE(bill): Generate a new name
- // parent$count
- isize name_len = proc->name.len + 1 + 8 + 1;
- u8 *name_text = gb_alloc_array(proc->module->allocator, u8, name_len);
- name_len = gb_snprintf(cast(char *)name_text, name_len, "%.*s$%d", LIT(proc->name), cast(i32)proc->children.count);
- String name = make_string(name_text, name_len-1);
-
- Type *type = type_of_expr(proc->module->info, expr);
- ssaValue *value = ssa_make_value_procedure(proc->module->allocator,
- proc->module, NULL, type, pl->type, pl->body, name);
-
- value->Proc.tags = pl->tags;
- value->Proc.parent = proc;
-
- array_add(&proc->children, &value->Proc);
- array_add(&proc->module->procs_to_generate, value);
-
- return value;
- case_end;
-
-
- case_ast_node(cl, CompoundLit, expr);
- return ssa_emit_load(proc, ssa_build_addr(proc, expr).addr);
- case_end;
-
-
- case_ast_node(ce, CallExpr, expr);
- AstNode *p = unparen_expr(ce->proc);
- if (p->kind == AstNode_Ident) {
- Entity **found = map_entity_get(&proc->module->info->uses, hash_pointer(p));
- if (found && (*found)->kind == Entity_Builtin) {
- Entity *e = *found;
- switch (e->Builtin.id) {
- case BuiltinProc_type_info: {
- Type *t = default_type(type_of_expr(proc->module->info, ce->args.e[0]));
- return ssa_type_info(proc, t);
- } break;
- case BuiltinProc_type_info_of_val: {
- Type *t = default_type(type_of_expr(proc->module->info, ce->args.e[0]));
- return ssa_type_info(proc, t);
- } break;
-
- case BuiltinProc_new: {
- ssa_emit_comment(proc, str_lit("new"));
- // new :: proc(Type) -> ^Type
- gbAllocator allocator = proc->module->allocator;
-
- Type *type = type_of_expr(proc->module->info, ce->args.e[0]);
- Type *ptr_type = make_type_pointer(allocator, type);
-
- i64 s = type_size_of(proc->module->sizes, allocator, type);
- i64 a = type_align_of(proc->module->sizes, allocator, type);
-
- ssaValue **args = gb_alloc_array(allocator, ssaValue *, 2);
- args[0] = ssa_make_const_int(allocator, s);
- args[1] = ssa_make_const_int(allocator, a);
- ssaValue *call = ssa_emit_global_call(proc, "alloc_align", args, 2);
- ssaValue *v = ssa_emit_conv(proc, call, ptr_type);
- return v;
- } break;
-
- case BuiltinProc_new_slice: {
- ssa_emit_comment(proc, str_lit("new_slice"));
- // new_slice :: proc(Type, len: int[, cap: int]) -> ^Type
- gbAllocator allocator = proc->module->allocator;
-
- Type *type = type_of_expr(proc->module->info, ce->args.e[0]);
- Type *ptr_type = make_type_pointer(allocator, type);
- Type *slice_type = make_type_slice(allocator, type);
-
- i64 s = type_size_of(proc->module->sizes, allocator, type);
- i64 a = type_align_of(proc->module->sizes, allocator, type);
-
- ssaValue *elem_size = ssa_make_const_int(allocator, s);
- ssaValue *elem_align = ssa_make_const_int(allocator, a);
-
- ssaValue *len = ssa_emit_conv(proc, ssa_build_expr(proc, ce->args.e[1]), t_int);
- ssaValue *cap = len;
- if (ce->args.count == 3) {
- cap = ssa_emit_conv(proc, ssa_build_expr(proc, ce->args.e[2]), t_int);
- }
-
- ssa_emit_slice_bounds_check(proc, ast_node_token(ce->args.e[1]), v_zero, len, false);
-
- ssaValue *slice_size = ssa_emit_arith(proc, Token_Mul, elem_size, cap, t_int);
-
- ssaValue **args = gb_alloc_array(allocator, ssaValue *, 2);
- args[0] = slice_size;
- args[1] = elem_align;
- ssaValue *call = ssa_emit_global_call(proc, "alloc_align", args, 2);
-
- ssaValue *ptr = ssa_emit_conv(proc, call, ptr_type);
- ssaValue *slice = ssa_add_local_generated(proc, slice_type);
-
- ssaValue *gep0 = ssa_emit_struct_ep(proc, slice, 0);
- ssaValue *gep1 = ssa_emit_struct_ep(proc, slice, 1);
- ssaValue *gep2 = ssa_emit_struct_ep(proc, slice, 2);
- ssa_emit_store(proc, gep0, ptr);
- ssa_emit_store(proc, gep1, len);
- ssa_emit_store(proc, gep2, cap);
- return ssa_emit_load(proc, slice);
- } break;
-
- case BuiltinProc_assert: {
- ssa_emit_comment(proc, str_lit("assert"));
- ssaValue *cond = ssa_build_expr(proc, ce->args.e[0]);
- GB_ASSERT(is_type_boolean(ssa_type(cond)));
-
- cond = ssa_emit_comp(proc, Token_CmpEq, cond, v_false);
- ssaBlock *err = ssa_add_block(proc, NULL, "builtin.assert.err");
- ssaBlock *done = ssa_add_block(proc, NULL, "builtin.assert.done");
-
- ssa_emit_if(proc, cond, err, done);
- proc->curr_block = err;
-
- // TODO(bill): Cleanup allocations here
- Token token = ast_node_token(ce->args.e[0]);
- TokenPos pos = token.pos;
- gbString expr = expr_to_string(ce->args.e[0]);
- isize expr_len = gb_string_length(expr);
- String expr_str = {0};
- expr_str.text = cast(u8 *)gb_alloc_copy_align(proc->module->allocator, expr, expr_len, 1);
- expr_str.len = expr_len;
- gb_string_free(expr);
-
-
- ssaValue **args = gb_alloc_array(proc->module->allocator, ssaValue *, 4);
- args[0] = ssa_make_const_string(proc->module->allocator, pos.file);
- args[1] = ssa_make_const_int(proc->module->allocator, pos.line);
- args[2] = ssa_make_const_int(proc->module->allocator, pos.column);
- args[3] = ssa_make_const_string(proc->module->allocator, expr_str);
- ssa_emit_global_call(proc, "__assert", args, 4);
-
- ssa_emit_jump(proc, done);
- proc->curr_block = done;
-
- return NULL;
- } break;
-
- case BuiltinProc_panic: {
- ssa_emit_comment(proc, str_lit("panic"));
- ssaValue *msg = ssa_build_expr(proc, ce->args.e[0]);
- GB_ASSERT(is_type_string(ssa_type(msg)));
-
- Token token = ast_node_token(ce->args.e[0]);
- TokenPos pos = token.pos;
-
- ssaValue **args = gb_alloc_array(proc->module->allocator, ssaValue *, 4);
- args[0] = ssa_make_const_string(proc->module->allocator, pos.file);
- args[1] = ssa_make_const_int(proc->module->allocator, pos.line);
- args[2] = ssa_make_const_int(proc->module->allocator, pos.column);
- args[3] = msg;
- ssa_emit_global_call(proc, "__assert", args, 4);
-
- return NULL;
- } break;
-
-
- case BuiltinProc_copy: {
- ssa_emit_comment(proc, str_lit("copy"));
- // copy :: proc(dst, src: []Type) -> int
- AstNode *dst_node = ce->args.e[0];
- AstNode *src_node = ce->args.e[1];
- ssaValue *dst_slice = ssa_build_expr(proc, dst_node);
- ssaValue *src_slice = ssa_build_expr(proc, src_node);
- Type *slice_type = base_type(ssa_type(dst_slice));
- GB_ASSERT(slice_type->kind == Type_Slice);
- Type *elem_type = slice_type->Slice.elem;
- i64 size_of_elem = type_size_of(proc->module->sizes, proc->module->allocator, elem_type);
-
- ssaValue *dst = ssa_emit_conv(proc, ssa_slice_elem(proc, dst_slice), t_rawptr);
- ssaValue *src = ssa_emit_conv(proc, ssa_slice_elem(proc, src_slice), t_rawptr);
-
- ssaValue *len_dst = ssa_slice_len(proc, dst_slice);
- ssaValue *len_src = ssa_slice_len(proc, src_slice);
-
- ssaValue *cond = ssa_emit_comp(proc, Token_Lt, len_dst, len_src);
- ssaValue *len = ssa_emit_select(proc, cond, len_dst, len_src);
-
- ssaValue *elem_size = ssa_make_const_int(proc->module->allocator, size_of_elem);
- ssaValue *byte_count = ssa_emit_arith(proc, Token_Mul, len, elem_size, t_int);
-
- ssaValue **args = gb_alloc_array(proc->module->allocator, ssaValue *, 3);
- args[0] = dst;
- args[1] = src;
- args[2] = byte_count;
-
- ssa_emit_global_call(proc, "__mem_copy", args, 3);
-
- return len;
- } break;
- #if 0
- case BuiltinProc_append: {
- ssa_emit_comment(proc, str_lit("append"));
- // append :: proc(s: ^[]Type, item: Type) -> bool
- AstNode *sptr_node = ce->args.e[0];
- AstNode *item_node = ce->args.e[1];
- ssaValue *slice_ptr = ssa_build_expr(proc, sptr_node);
- ssaValue *slice = ssa_emit_load(proc, slice_ptr);
-
- ssaValue *elem = ssa_slice_elem(proc, slice);
- ssaValue *len = ssa_slice_len(proc, slice);
- ssaValue *cap = ssa_slice_cap(proc, slice);
-
- Type *elem_type = type_deref(ssa_type(elem));
-
- ssaValue *item_value = ssa_build_expr(proc, item_node);
- item_value = ssa_emit_conv(proc, item_value, elem_type);
-
- ssaValue *item = ssa_add_local_generated(proc, elem_type);
- ssa_emit_store(proc, item, item_value);
-
-
- // NOTE(bill): Check if can append is possible
- ssaValue *cond = ssa_emit_comp(proc, Token_Lt, len, cap);
- ssaBlock *able = ssa_add_block(proc, NULL, "builtin.append.able");
- ssaBlock *done = ssa_add_block(proc, NULL, "builtin.append.done");
-
- ssa_emit_if(proc, cond, able, done);
- proc->curr_block = able;
-
- // Add new slice item
- i64 item_size = type_size_of(proc->module->sizes, proc->module->allocator, elem_type);
- ssaValue *byte_count = ssa_make_const_int(proc->module->allocator, item_size);
-
- ssaValue *offset = ssa_emit_ptr_offset(proc, elem, len);
- offset = ssa_emit_conv(proc, offset, t_rawptr);
-
- item = ssa_emit_ptr_offset(proc, item, v_zero);
- item = ssa_emit_conv(proc, item, t_rawptr);
-
- ssaValue **args = gb_alloc_array(proc->module->allocator, ssaValue *, 3);
- args[0] = offset;
- args[1] = item;
- args[2] = byte_count;
-
- ssa_emit_global_call(proc, "__mem_copy", args, 3);
-
- // Increment slice length
- ssaValue *new_len = ssa_emit_arith(proc, Token_Add, len, v_one, t_int);
- ssaValue *gep = ssa_emit_struct_ep(proc, slice_ptr, 1);
- ssa_emit_store(proc, gep, new_len);
-
- ssa_emit_jump(proc, done);
- proc->curr_block = done;
-
- return ssa_emit_conv(proc, cond, t_bool);
- } break;
- #endif
-
- case BuiltinProc_swizzle: {
- ssa_emit_comment(proc, str_lit("swizzle"));
- ssaValue *vector = ssa_build_expr(proc, ce->args.e[0]);
- isize index_count = ce->args.count-1;
- if (index_count == 0) {
- return vector;
- }
-
- i32 *indices = gb_alloc_array(proc->module->allocator, i32, index_count);
- isize index = 0;
- for_array(i, ce->args) {
- if (i == 0) continue;
- TypeAndValue *tv = type_and_value_of_expression(proc->module->info, ce->args.e[i]);
- GB_ASSERT(is_type_integer(tv->type));
- GB_ASSERT(tv->value.kind == ExactValue_Integer);
- indices[index++] = cast(i32)tv->value.value_integer;
- }
-
- return ssa_emit(proc, ssa_make_instr_vector_shuffle(proc, vector, indices, index_count));
-
- } break;
-
- case BuiltinProc_slice_ptr: {
- ssa_emit_comment(proc, str_lit("slice_ptr"));
- ssaValue *ptr = ssa_build_expr(proc, ce->args.e[0]);
- ssaValue *len = ssa_build_expr(proc, ce->args.e[1]);
- ssaValue *cap = len;
-
- len = ssa_emit_conv(proc, len, t_int);
-
- if (ce->args.count == 3) {
- cap = ssa_build_expr(proc, ce->args.e[2]);
- cap = ssa_emit_conv(proc, cap, t_int);
- }
-
-
- Type *slice_type = make_type_slice(proc->module->allocator, type_deref(ssa_type(ptr)));
- ssaValue *slice = ssa_add_local_generated(proc, slice_type);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, slice, 0), ptr);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, slice, 1), len);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, slice, 2), cap);
- return ssa_emit_load(proc, slice);
- } break;
-
- case BuiltinProc_min: {
- ssa_emit_comment(proc, str_lit("min"));
- Type *t = type_of_expr(proc->module->info, expr);
- ssaValue *x = ssa_emit_conv(proc, ssa_build_expr(proc, ce->args.e[0]), t);
- ssaValue *y = ssa_emit_conv(proc, ssa_build_expr(proc, ce->args.e[1]), t);
- ssaValue *cond = ssa_emit_comp(proc, Token_Lt, x, y);
- return ssa_emit_select(proc, cond, x, y);
- } break;
-
- case BuiltinProc_max: {
- ssa_emit_comment(proc, str_lit("max"));
- Type *t = type_of_expr(proc->module->info, expr);
- ssaValue *x = ssa_emit_conv(proc, ssa_build_expr(proc, ce->args.e[0]), t);
- ssaValue *y = ssa_emit_conv(proc, ssa_build_expr(proc, ce->args.e[1]), t);
- ssaValue *cond = ssa_emit_comp(proc, Token_Gt, x, y);
- return ssa_emit_select(proc, cond, x, y);
- } break;
-
- case BuiltinProc_abs: {
- ssa_emit_comment(proc, str_lit("abs"));
- gbAllocator a = proc->module->allocator;
-
- ssaValue *x = ssa_build_expr(proc, ce->args.e[0]);
- Type *original_type = ssa_type(x);
- Type *t = original_type;
- i64 sz = type_size_of(proc->module->sizes, a, t);
- GB_ASSERT(is_type_integer(t) || is_type_float(t));
- if (is_type_float(t)) {
- if (sz == 4) {
- t = t_i32;
- } else if (sz == 8) {
- t = t_i64;
- } else {
- GB_PANIC("unknown float type for `abs`");
- }
-
- x = ssa_emit_bitcast(proc, x, t);
- }
-
- /*
- NOTE(bill): See Hacker's Delight, section 2-4.
- m := x >> (int_size-1)
- b := x ^ m
- return b - m
- */
-
- ssaValue *m = ssa_emit_arith(proc, Token_Shr,
- x,
- ssa_make_value_constant(a, t, make_exact_value_integer(sz-1)),
- t);
- ssaValue *b = ssa_emit_arith(proc, Token_Xor, x, m, t);
- ssaValue *v = ssa_emit_arith(proc, Token_Sub, b, m, t);
-
- if (is_type_float(t)) {
- v = ssa_emit_bitcast(proc, v, original_type);
- }
- return v;
- } break;
-
- case BuiltinProc_clamp: {
- ssa_emit_comment(proc, str_lit("clamp"));
- Type *t = type_of_expr(proc->module->info, expr);
- ssaValue *x = ssa_emit_conv(proc, ssa_build_expr(proc, ce->args.e[0]), t);
- ssaValue *min = ssa_emit_conv(proc, ssa_build_expr(proc, ce->args.e[1]), t);
- ssaValue *max = ssa_emit_conv(proc, ssa_build_expr(proc, ce->args.e[2]), t);
- ssaValue *cond;
- cond = ssa_emit_comp(proc, Token_Gt, min, x);
- x = ssa_emit_select(proc, cond, min, x);
- cond = ssa_emit_comp(proc, Token_Lt, max, x);
- x = ssa_emit_select(proc, cond, max, x);
- return x;
- } break;
- }
- }
- }
-
- // NOTE(bill): Regular call
- ssaValue *value = ssa_build_expr(proc, ce->proc);
- GB_ASSERT(value != NULL);
- Type *proc_type_ = base_type(ssa_type(value));
- GB_ASSERT(proc_type_->kind == Type_Proc);
- TypeProc *type = &proc_type_->Proc;
-
- isize arg_index = 0;
-
- isize arg_count = 0;
- for_array(i, ce->args) {
- AstNode *a = ce->args.e[i];
- Type *at = base_type(type_of_expr(proc->module->info, a));
- if (at->kind == Type_Tuple) {
- arg_count += at->Tuple.variable_count;
- } else {
- arg_count++;
- }
- }
- ssaValue **args = gb_alloc_array(proc->module->allocator, ssaValue *, arg_count);
- bool variadic = proc_type_->Proc.variadic;
- bool vari_expand = ce->ellipsis.pos.line != 0;
-
- for_array(i, ce->args) {
- ssaValue *a = ssa_build_expr(proc, ce->args.e[i]);
- Type *at = ssa_type(a);
- if (at->kind == Type_Tuple) {
- for (isize i = 0; i < at->Tuple.variable_count; i++) {
- Entity *e = at->Tuple.variables[i];
- ssaValue *v = ssa_emit_struct_ev(proc, a, i);
- args[arg_index++] = v;
- }
- } else {
- args[arg_index++] = a;
- }
- }
-
- TypeTuple *pt = &type->params->Tuple;
-
- if (variadic) {
- isize i = 0;
- for (; i < type->param_count-1; i++) {
- args[i] = ssa_emit_conv(proc, args[i], pt->variables[i]->type);
- }
- if (!vari_expand) {
- Type *variadic_type = pt->variables[i]->type;
- GB_ASSERT(is_type_slice(variadic_type));
- variadic_type = base_type(variadic_type)->Slice.elem;
- for (; i < arg_count; i++) {
- args[i] = ssa_emit_conv(proc, args[i], variadic_type);
- }
- }
- } else {
- for (isize i = 0; i < arg_count; i++) {
- args[i] = ssa_emit_conv(proc, args[i], pt->variables[i]->type);
- }
- }
-
- if (variadic && !vari_expand) {
- ssa_emit_comment(proc, str_lit("variadic call argument generation"));
- gbAllocator allocator = proc->module->allocator;
- Type *slice_type = pt->variables[type->param_count-1]->type;
- Type *elem_type = base_type(slice_type)->Slice.elem;
- ssaValue *slice = ssa_add_local_generated(proc, slice_type);
- isize slice_len = arg_count+1 - type->param_count;
-
- if (slice_len > 0) {
- ssaValue *base_array = ssa_add_local_generated(proc, make_type_array(allocator, elem_type, slice_len));
-
- for (isize i = type->param_count-1, j = 0; i < arg_count; i++, j++) {
- ssaValue *addr = ssa_emit_array_epi(proc, base_array, j);
- ssa_emit_store(proc, addr, args[i]);
- }
-
- ssaValue *base_elem = ssa_emit_array_epi(proc, base_array, 0);
- ssaValue *slice_elem = ssa_emit_struct_ep(proc, slice, 0);
- ssa_emit_store(proc, slice_elem, base_elem);
- ssaValue *len = ssa_make_const_int(allocator, slice_len);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, slice, 1), len);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, slice, 2), len);
- }
-
- arg_count = type->param_count;
- args[arg_count-1] = ssa_emit_load(proc, slice);
- }
-
- return ssa_emit_call(proc, value, args, arg_count);
- case_end;
-
- case_ast_node(de, DemaybeExpr, expr);
- return ssa_emit_load(proc, ssa_build_addr(proc, expr).addr);
- case_end;
-
- case_ast_node(se, SliceExpr, expr);
- return ssa_emit_load(proc, ssa_build_addr(proc, expr).addr);
- case_end;
-
- case_ast_node(ie, IndexExpr, expr);
- return ssa_emit_load(proc, ssa_build_addr(proc, expr).addr);
- case_end;
- }
-
- GB_PANIC("Unexpected expression: %.*s", LIT(ast_node_strings[expr->kind]));
- return NULL;
-}
-
-
-ssaValue *ssa_build_expr(ssaProcedure *proc, AstNode *expr) {
- expr = unparen_expr(expr);
-
- TypeAndValue *tv = map_tav_get(&proc->module->info->types, hash_pointer(expr));
- GB_ASSERT_NOT_NULL(tv);
-
- if (tv->value.kind != ExactValue_Invalid) {
- return ssa_add_module_constant(proc->module, tv->type, tv->value);
- }
-
- ssaValue *value = NULL;
- if (tv->mode == Addressing_Variable) {
- value = ssa_addr_load(proc, ssa_build_addr(proc, expr));
- } else {
- value = ssa_build_single_expr(proc, expr, tv);
- }
-
- return value;
-}
-
-ssaValue *ssa_add_using_variable(ssaProcedure *proc, Entity *e) {
- GB_ASSERT(e->kind == Entity_Variable && e->flags & EntityFlag_Anonymous);
- String name = e->token.string;
- Entity *parent = e->using_parent;
- Selection sel = lookup_field(proc->module->allocator, parent->type, name, false);
- GB_ASSERT(sel.entity != NULL);
- ssaValue **pv = map_ssa_value_get(&proc->module->values, hash_pointer(parent));
- ssaValue *v = NULL;
- if (pv != NULL) {
- v = *pv;
- } else {
- v = ssa_build_addr(proc, e->using_expr).addr;
- }
- GB_ASSERT(v != NULL);
- ssaValue *var = ssa_emit_deep_field_gep(proc, parent->type, v, sel);
- map_ssa_value_set(&proc->module->values, hash_pointer(e), var);
- return var;
-}
-
-bool ssa_is_elem_const(ssaModule *m, AstNode *elem, Type *elem_type) {
- if (base_type(elem_type) == t_any) {
- return false;
- }
- if (elem->kind == AstNode_FieldValue) {
- elem = elem->FieldValue.value;
- }
- TypeAndValue *tav = type_and_value_of_expression(m->info, elem);
- GB_ASSERT(tav != NULL);
- return tav->value.kind != ExactValue_Invalid;
-}
-
-ssaAddr ssa_build_addr_from_entity(ssaProcedure *proc, Entity *e, AstNode *expr) {
- GB_ASSERT(e != NULL);
- GB_ASSERT(e->kind != Entity_Constant);
-
- ssaValue *v = NULL;
- ssaValue **found = map_ssa_value_get(&proc->module->values, hash_pointer(e));
- if (found) {
- v = *found;
- } else if (e->kind == Entity_Variable && e->flags & EntityFlag_Anonymous) {
- v = ssa_add_using_variable(proc, e);
- } else if (e->kind == Entity_ImplicitValue) {
- // TODO(bill): Should a copy be made?
- v = ssa_find_implicit_value_backing(proc, e->ImplicitValue.id);
- }
-
- if (v == NULL) {
- GB_PANIC("Unknown value: %.*s, entity: %p %.*s\n", LIT(e->token.string), e, LIT(entity_strings[e->kind]));
- }
-
- return ssa_make_addr(v, expr);
-}
-
-ssaAddr ssa_build_addr(ssaProcedure *proc, AstNode *expr) {
- switch (expr->kind) {
- case_ast_node(i, Ident, expr);
- if (ssa_is_blank_ident(expr)) {
- ssaAddr val = {0};
- return val;
- }
-
- Entity *e = entity_of_ident(proc->module->info, expr);
- return ssa_build_addr_from_entity(proc, e, expr);
- case_end;
-
- case_ast_node(pe, ParenExpr, expr);
- return ssa_build_addr(proc, unparen_expr(expr));
- case_end;
-
- case_ast_node(se, SelectorExpr, expr);
- ssa_emit_comment(proc, str_lit("SelectorExpr"));
- AstNode *sel = unparen_expr(se->selector);
- GB_ASSERT(sel->kind == AstNode_Ident);
- String selector = sel->Ident.string;
- Type *type = base_type(type_of_expr(proc->module->info, se->expr));
-
- if (type == t_invalid) {
- // NOTE(bill): Imports
- Entity *imp = entity_of_ident(proc->module->info, se->expr);
- if (imp != NULL) {
- GB_ASSERT(imp->kind == Entity_ImportName);
- }
- return ssa_build_addr(proc, unparen_expr(se->selector));
- } else {
- Selection sel = lookup_field(proc->module->allocator, type, selector, false);
- GB_ASSERT(sel.entity != NULL);
-
- ssaValue *a = ssa_build_addr(proc, se->expr).addr;
- a = ssa_emit_deep_field_gep(proc, type, a, sel);
- return ssa_make_addr(a, expr);
- }
- case_end;
-
- case_ast_node(ue, UnaryExpr, expr);
- switch (ue->op.kind) {
- case Token_Pointer: {
- return ssa_build_addr(proc, ue->expr);
- }
- default:
- GB_PANIC("Invalid unary expression for ssa_build_addr");
- }
- case_end;
-
- case_ast_node(be, BinaryExpr, expr);
- switch (be->op.kind) {
- case Token_as: {
- ssa_emit_comment(proc, str_lit("Cast - as"));
- // NOTE(bill): Needed for dereference of pointer conversion
- Type *type = type_of_expr(proc->module->info, expr);
- ssaValue *v = ssa_add_local_generated(proc, type);
- ssa_emit_store(proc, v, ssa_emit_conv(proc, ssa_build_expr(proc, be->left), type));
- return ssa_make_addr(v, expr);
- }
- case Token_transmute: {
- ssa_emit_comment(proc, str_lit("Cast - transmute"));
- // NOTE(bill): Needed for dereference of pointer conversion
- Type *type = type_of_expr(proc->module->info, expr);
- ssaValue *v = ssa_add_local_generated(proc, type);
- ssa_emit_store(proc, v, ssa_emit_transmute(proc, ssa_build_expr(proc, be->left), type));
- return ssa_make_addr(v, expr);
- }
- default:
- GB_PANIC("Invalid binary expression for ssa_build_addr: %.*s\n", LIT(be->op.string));
- break;
- }
- case_end;
-
- case_ast_node(ie, IndexExpr, expr);
- ssa_emit_comment(proc, str_lit("IndexExpr"));
- Type *t = base_type(type_of_expr(proc->module->info, ie->expr));
- gbAllocator a = proc->module->allocator;
-
-
- bool deref = is_type_pointer(t);
- t = type_deref(t);
-
- ssaValue *using_addr = NULL;
- if (!is_type_indexable(t)) {
- // Using index expression
- Entity *using_field = find_using_index_expr(t);
- if (using_field != NULL) {
- Selection sel = lookup_field(a, t, using_field->token.string, false);
- ssaValue *e = ssa_build_addr(proc, ie->expr).addr;
- using_addr = ssa_emit_deep_field_gep(proc, t, e, sel);
-
- t = using_field->type;
- }
- }
-
-
- switch (t->kind) {
- case Type_Vector: {
- ssaValue *vector = NULL;
- if (using_addr != NULL) {
- vector = using_addr;
- } else {
- vector = ssa_build_addr(proc, ie->expr).addr;
- if (deref) {
- vector = ssa_emit_load(proc, vector);
- }
- }
- ssaValue *index = ssa_emit_conv(proc, ssa_build_expr(proc, ie->index), t_int);
- ssaValue *len = ssa_make_const_int(a, t->Vector.count);
- ssa_emit_bounds_check(proc, ast_node_token(ie->index), index, len);
- return ssa_make_addr_vector(vector, index, expr);
- } break;
-
- case Type_Array: {
- ssaValue *array = NULL;
- if (using_addr != NULL) {
- array = using_addr;
- } else {
- array = ssa_build_addr(proc, ie->expr).addr;
- if (deref) {
- array = ssa_emit_load(proc, array);
- }
- }
- ssaValue *index = ssa_emit_conv(proc, ssa_build_expr(proc, ie->index), t_int);
- ssaValue *elem = ssa_emit_array_ep(proc, array, index);
- ssaValue *len = ssa_make_const_int(a, t->Vector.count);
- ssa_emit_bounds_check(proc, ast_node_token(ie->index), index, len);
- return ssa_make_addr(elem, expr);
- } break;
-
- case Type_Slice: {
- ssaValue *slice = NULL;
- if (using_addr != NULL) {
- slice = ssa_emit_load(proc, using_addr);
- } else {
- slice = ssa_build_expr(proc, ie->expr);
- if (deref) {
- slice = ssa_emit_load(proc, slice);
- }
- }
- ssaValue *elem = ssa_slice_elem(proc, slice);
- ssaValue *len = ssa_slice_len(proc, slice);
- ssaValue *index = ssa_emit_conv(proc, ssa_build_expr(proc, ie->index), t_int);
- ssa_emit_bounds_check(proc, ast_node_token(ie->index), index, len);
- ssaValue *v = ssa_emit_ptr_offset(proc, elem, index);
- return ssa_make_addr(v, expr);
-
- } break;
-
- case Type_Basic: { // Basic_string
- TypeAndValue *tv = map_tav_get(&proc->module->info->types, hash_pointer(ie->expr));
- ssaValue *str;
- ssaValue *elem;
- ssaValue *len;
- ssaValue *index;
-
- if (using_addr != NULL) {
- str = ssa_emit_load(proc, using_addr);
- } else {
- str = ssa_build_expr(proc, ie->expr);
- if (deref) {
- str = ssa_emit_load(proc, str);
- }
- }
- elem = ssa_string_elem(proc, str);
- len = ssa_string_len(proc, str);
-
- index = ssa_emit_conv(proc, ssa_build_expr(proc, ie->index), t_int);
- ssa_emit_bounds_check(proc, ast_node_token(ie->index), index, len);
-
- return ssa_make_addr(ssa_emit_ptr_offset(proc, elem, index), expr);
- } break;
- }
- case_end;
-
- case_ast_node(se, SliceExpr, expr);
- ssa_emit_comment(proc, str_lit("SliceExpr"));
- gbAllocator a = proc->module->allocator;
- ssaValue *low = v_zero;
- ssaValue *high = NULL;
-
- if (se->low != NULL) low = ssa_build_expr(proc, se->low);
- if (se->high != NULL) high = ssa_build_expr(proc, se->high);
- ssaValue *addr = ssa_build_addr(proc, se->expr).addr;
- ssaValue *base = ssa_emit_load(proc, addr);
- Type *type = base_type(ssa_type(base));
-
- if (is_type_pointer(type)) {
- type = type_deref(type);
- addr = base;
- base = ssa_emit_load(proc, base);
- }
-
- // TODO(bill): Cleanup like mad!
-
- switch (type->kind) {
- case Type_Slice: {
- Type *slice_type = type;
-
- if (high == NULL) high = ssa_slice_len(proc, base);
-
- ssa_emit_slice_bounds_check(proc, se->open, low, high, false);
-
- ssaValue *elem = ssa_emit_ptr_offset(proc, ssa_slice_elem(proc, base), low);
- ssaValue *len = ssa_emit_arith(proc, Token_Sub, high, low, t_int);
- ssaValue *slice = ssa_add_local_generated(proc, slice_type);
-
- ssaValue *gep0 = ssa_emit_struct_ep(proc, slice, 0);
- ssaValue *gep1 = ssa_emit_struct_ep(proc, slice, 1);
- ssa_emit_store(proc, gep0, elem);
- ssa_emit_store(proc, gep1, len);
-
- return ssa_make_addr(slice, expr);
- }
-
- case Type_Array: {
- Type *slice_type = make_type_slice(a, type->Array.elem);
-
- if (high == NULL) high = ssa_array_len(proc, base);
-
- ssa_emit_slice_bounds_check(proc, se->open, low, high, false);
-
- ssaValue *elem = ssa_emit_ptr_offset(proc, ssa_array_elem(proc, addr), low);
- ssaValue *len = ssa_emit_arith(proc, Token_Sub, high, low, t_int);
- ssaValue *slice = ssa_add_local_generated(proc, slice_type);
-
- ssaValue *gep0 = ssa_emit_struct_ep(proc, slice, 0);
- ssaValue *gep1 = ssa_emit_struct_ep(proc, slice, 1);
- ssa_emit_store(proc, gep0, elem);
- ssa_emit_store(proc, gep1, len);
-
- return ssa_make_addr(slice, expr);
- }
-
- case Type_Basic: {
- GB_ASSERT(type == t_string);
- if (high == NULL) {
- high = ssa_string_len(proc, base);
- }
-
- ssa_emit_slice_bounds_check(proc, se->open, low, high, true);
-
- ssaValue *elem, *len;
- len = ssa_emit_arith(proc, Token_Sub, high, low, t_int);
-
- elem = ssa_string_elem(proc, base);
- elem = ssa_emit_ptr_offset(proc, elem, low);
-
- ssaValue *str = ssa_add_local_generated(proc, t_string);
- ssaValue *gep0 = ssa_emit_struct_ep(proc, str, 0);
- ssaValue *gep1 = ssa_emit_struct_ep(proc, str, 1);
- ssa_emit_store(proc, gep0, elem);
- ssa_emit_store(proc, gep1, len);
-
- return ssa_make_addr(str, expr);
- } break;
- }
-
- GB_PANIC("Unknown slicable type");
- case_end;
-
- case_ast_node(de, DerefExpr, expr);
- // TODO(bill): Is a ptr copy needed?
- ssaValue *addr = ssa_build_expr(proc, de->expr);
- addr = ssa_emit_ptr_offset(proc, addr, v_zero);
- return ssa_make_addr(addr, expr);
- case_end;
-
- case_ast_node(de, DemaybeExpr, expr);
- ssa_emit_comment(proc, str_lit("DemaybeExpr"));
- ssaValue *maybe = ssa_build_expr(proc, de->expr);
- Type *t = default_type(type_of_expr(proc->module->info, expr));
- GB_ASSERT(is_type_tuple(t));
-
- ssaValue *result = ssa_add_local_generated(proc, t);
- ssa_emit_store(proc, result, maybe);
-
- return ssa_make_addr(result, expr);
- case_end;
-
- case_ast_node(ce, CallExpr, expr);
- ssaValue *e = ssa_build_expr(proc, expr);
- ssaValue *v = ssa_add_local_generated(proc, ssa_type(e));
- ssa_emit_store(proc, v, e);
- return ssa_make_addr(v, expr);
- case_end;
-
-
- case_ast_node(cl, CompoundLit, expr);
- ssa_emit_comment(proc, str_lit("CompoundLit"));
- Type *type = type_of_expr(proc->module->info, expr);
- Type *bt = base_type(type);
- ssaValue *v = ssa_add_local_generated(proc, type);
-
- Type *et = NULL;
- switch (bt->kind) {
- case Type_Vector: et = bt->Vector.elem; break;
- case Type_Array: et = bt->Array.elem; break;
- case Type_Slice: et = bt->Slice.elem; break;
- }
-
- switch (bt->kind) {
- default: GB_PANIC("Unknown CompoundLit type: %s", type_to_string(type)); break;
-
- case Type_Vector: {
- ssaValue *result = ssa_add_module_constant(proc->module, type, make_exact_value_compound(expr));
- for_array(index, cl->elems) {
- AstNode *elem = cl->elems.e[index];
- if (ssa_is_elem_const(proc->module, elem, et)) {
- continue;
- }
- ssaValue *field_elem = ssa_build_expr(proc, elem);
- Type *t = ssa_type(field_elem);
- GB_ASSERT(t->kind != Type_Tuple);
- ssaValue *ev = ssa_emit_conv(proc, field_elem, et);
- ssaValue *i = ssa_make_const_int(proc->module->allocator, index);
- result = ssa_emit(proc, ssa_make_instr_insert_element(proc, result, ev, i));
- }
-
- if (cl->elems.count == 1 && bt->Vector.count > 1) {
- isize index_count = bt->Vector.count;
- i32 *indices = gb_alloc_array(proc->module->allocator, i32, index_count);
- for (isize i = 0; i < index_count; i++) {
- indices[i] = 0;
- }
- ssaValue *sv = ssa_emit(proc, ssa_make_instr_vector_shuffle(proc, result, indices, index_count));
- ssa_emit_store(proc, v, sv);
- return ssa_make_addr(v, expr);
- }
- ssa_emit_store(proc, v, result);
- } break;
-
- case Type_Record: {
- GB_ASSERT(is_type_struct(bt));
- TypeRecord *st = &bt->Record;
- if (cl->elems.count > 0) {
- ssa_emit_store(proc, v, ssa_add_module_constant(proc->module, type, make_exact_value_compound(expr)));
- for_array(field_index, cl->elems) {
- AstNode *elem = cl->elems.e[field_index];
-
- ssaValue *field_expr = NULL;
- Entity *field = NULL;
- isize index = field_index;
-
- if (elem->kind == AstNode_FieldValue) {
- ast_node(fv, FieldValue, elem);
- Selection sel = lookup_field(proc->module->allocator, bt, fv->field->Ident.string, false);
- index = sel.index.e[0];
- elem = fv->value;
- } else {
- TypeAndValue *tav = type_and_value_of_expression(proc->module->info, elem);
- Selection sel = lookup_field(proc->module->allocator, bt, st->fields_in_src_order[field_index]->token.string, false);
- index = sel.index.e[0];
- }
-
- field = st->fields[index];
- if (ssa_is_elem_const(proc->module, elem, field->type)) {
- continue;
- }
-
- field_expr = ssa_build_expr(proc, elem);
-
- GB_ASSERT(ssa_type(field_expr)->kind != Type_Tuple);
-
- Type *ft = field->type;
- ssaValue *fv = ssa_emit_conv(proc, field_expr, ft);
- ssaValue *gep = ssa_emit_struct_ep(proc, v, index);
- ssa_emit_store(proc, gep, fv);
- }
- }
- } break;
- case Type_Array: {
- if (cl->elems.count > 0) {
- ssa_emit_store(proc, v, ssa_add_module_constant(proc->module, type, make_exact_value_compound(expr)));
- for_array(i, cl->elems) {
- AstNode *elem = cl->elems.e[i];
- if (ssa_is_elem_const(proc->module, elem, et)) {
- continue;
- }
- ssaValue *field_expr = ssa_build_expr(proc, elem);
- Type *t = ssa_type(field_expr);
- GB_ASSERT(t->kind != Type_Tuple);
- ssaValue *ev = ssa_emit_conv(proc, field_expr, et);
- ssaValue *gep = ssa_emit_array_epi(proc, v, i);
- ssa_emit_store(proc, gep, ev);
- }
- }
- } break;
- case Type_Slice: {
- if (cl->elems.count > 0) {
- Type *elem_type = bt->Slice.elem;
- Type *elem_ptr_type = make_type_pointer(proc->module->allocator, elem_type);
- Type *elem_ptr_ptr_type = make_type_pointer(proc->module->allocator, elem_ptr_type);
- ssaValue *slice = ssa_add_module_constant(proc->module, type, make_exact_value_compound(expr));
- GB_ASSERT(slice->kind == ssaValue_ConstantSlice);
-
- ssaValue *data = ssa_emit_array_ep(proc, slice->ConstantSlice.backing_array, v_zero32);
-
- for_array(i, cl->elems) {
- AstNode *elem = cl->elems.e[i];
- if (ssa_is_elem_const(proc->module, elem, et)) {
- continue;
- }
-
- ssaValue *field_expr = ssa_build_expr(proc, elem);
- Type *t = ssa_type(field_expr);
- GB_ASSERT(t->kind != Type_Tuple);
- ssaValue *ev = ssa_emit_conv(proc, field_expr, elem_type);
- ssaValue *offset = ssa_emit_ptr_offset(proc, data, ssa_make_const_int(proc->module->allocator, i));
- ssa_emit_store(proc, offset, ev);
- }
-
- ssaValue *gep0 = ssa_emit_struct_ep(proc, v, 0);
- ssaValue *gep1 = ssa_emit_struct_ep(proc, v, 1);
- ssaValue *gep2 = ssa_emit_struct_ep(proc, v, 1);
-
- ssa_emit_store(proc, gep0, data);
- ssa_emit_store(proc, gep1, ssa_make_const_int(proc->module->allocator, slice->ConstantSlice.count));
- ssa_emit_store(proc, gep2, ssa_make_const_int(proc->module->allocator, slice->ConstantSlice.count));
- }
- } break;
- }
-
- return ssa_make_addr(v, expr);
- case_end;
-
-
- }
-
- TokenPos token_pos = ast_node_token(expr).pos;
- GB_PANIC("Unexpected address expression\n"
- "\tAstNode: %.*s @ "
- "%.*s(%td:%td)\n",
- LIT(ast_node_strings[expr->kind]),
- LIT(token_pos.file), token_pos.line, token_pos.column);
-
-
- return ssa_make_addr(NULL, NULL);
-}
-
-void ssa_build_assign_op(ssaProcedure *proc, ssaAddr lhs, ssaValue *value, TokenKind op) {
- ssaValue *old_value = ssa_addr_load(proc, lhs);
- Type *type = ssa_type(old_value);
-
- ssaValue *change = value;
- if (is_type_pointer(type) && is_type_integer(ssa_type(value))) {
- change = ssa_emit_conv(proc, value, default_type(ssa_type(value)));
- } else {
- change = ssa_emit_conv(proc, value, type);
- }
- ssaValue *new_value = ssa_emit_arith(proc, op, old_value, change, type);
- ssa_addr_store(proc, lhs, new_value);
-}
-
-ssaValue *ssa_build_cond(ssaProcedure *proc, AstNode *cond, ssaBlock *true_block, ssaBlock *false_block) {
- switch (cond->kind) {
- case_ast_node(pe, ParenExpr, cond);
- return ssa_build_cond(proc, pe->expr, true_block, false_block);
- case_end;
-
- case_ast_node(ue, UnaryExpr, cond);
- if (ue->op.kind == Token_Not) {
- return ssa_build_cond(proc, ue->expr, false_block, true_block);
- }
- case_end;
-
- case_ast_node(be, BinaryExpr, cond);
- if (be->op.kind == Token_CmpAnd) {
- ssaBlock *block = ssa_add_block(proc, NULL, "cmp.and");
- ssa_build_cond(proc, be->left, block, false_block);
- proc->curr_block = block;
- return ssa_build_cond(proc, be->right, true_block, false_block);
- } else if (be->op.kind == Token_CmpOr) {
- ssaBlock *block = ssa_add_block(proc, NULL, "cmp.or");
- ssa_build_cond(proc, be->left, true_block, block);
- proc->curr_block = block;
- return ssa_build_cond(proc, be->right, true_block, false_block);
- }
- case_end;
- }
-
- ssaValue *v = ssa_build_expr(proc, cond);
- v = ssa_emit_conv(proc, v, t_bool);
- ssa_emit_if(proc, v, true_block, false_block);
- return v;
-}
-
-
-
-
-void ssa_build_stmt_list(ssaProcedure *proc, AstNodeArray stmts) {
- for_array(i, stmts) {
- ssa_build_stmt(proc, stmts.e[i]);
- }
-}
-
-void ssa_build_stmt_internal(ssaProcedure *proc, AstNode *node);
-void ssa_build_stmt(ssaProcedure *proc, AstNode *node) {
- u32 prev_stmt_state_flags = proc->module->stmt_state_flags;
-
- if (node->stmt_state_flags != 0) {
- u32 in = node->stmt_state_flags;
- u32 out = proc->module->stmt_state_flags;
-
- if (in & StmtStateFlag_bounds_check) {
- out |= StmtStateFlag_bounds_check;
- out &= ~StmtStateFlag_no_bounds_check;
- } else if (in & StmtStateFlag_no_bounds_check) {
- out |= StmtStateFlag_no_bounds_check;
- out &= ~StmtStateFlag_bounds_check;
- }
-
- proc->module->stmt_state_flags = out;
- }
-
- ssa_build_stmt_internal(proc, node);
-
- proc->module->stmt_state_flags = prev_stmt_state_flags;
-}
-
-void ssa_build_when_stmt(ssaProcedure *proc, AstNodeWhenStmt *ws) {
- ssaValue *cond = ssa_build_expr(proc, ws->cond);
- GB_ASSERT(cond->kind == ssaValue_Constant &&
- is_type_boolean(ssa_type(cond)));
-
- GB_ASSERT(cond->Constant.value.kind == ExactValue_Bool);
- if (cond->Constant.value.value_bool) {
- ssa_build_stmt_list(proc, ws->body->BlockStmt.stmts);
- } else if (ws->else_stmt) {
- switch (ws->else_stmt->kind) {
- case AstNode_BlockStmt:
- ssa_build_stmt_list(proc, ws->else_stmt->BlockStmt.stmts);
- break;
- case AstNode_WhenStmt:
- ssa_build_when_stmt(proc, &ws->else_stmt->WhenStmt);
- break;
- default:
- GB_PANIC("Invalid `else` statement in `when` statement");
- break;
- }
- }
-}
-
-void ssa_emit_increment(ssaProcedure *proc, ssaValue *addr) {
- GB_ASSERT(is_type_pointer(ssa_type(addr)));
- Type *type = type_deref(ssa_type(addr));
- ssa_emit_store(proc, addr, ssa_emit_arith(proc, Token_Add, ssa_emit_load(proc, addr), v_one, type));
-
-}
-
-void ssa_build_range_indexed(ssaProcedure *proc, ssaValue *expr, Type *val_type,
- ssaValue **val_, ssaValue **idx_, ssaBlock **loop_, ssaBlock **done_) {
- ssaValue *count = NULL;
- Type *expr_type = base_type(ssa_type(expr));
- switch (expr_type->kind) {
- case Type_Array:
- count = ssa_make_const_int(proc->module->allocator, expr_type->Array.count);
- break;
- case Type_Slice:
- count = ssa_slice_len(proc, expr);
- break;
- default:
- GB_PANIC("Cannot do range_indexed of %s", type_to_string(expr_type));
- break;
- }
-
- ssaValue *val = NULL;
- ssaValue *idx = NULL;
- ssaBlock *loop = NULL;
- ssaBlock *done = NULL;
- ssaBlock *body = NULL;
-
- ssaValue *index = ssa_add_local_generated(proc, t_int);
- ssa_emit_store(proc, index, ssa_make_const_int(proc->module->allocator, -1));
-
- loop = ssa_add_block(proc, NULL, "for.index.loop");
- ssa_emit_jump(proc, loop);
- proc->curr_block = loop;
-
- ssaValue *incr = ssa_emit_arith(proc, Token_Add, ssa_emit_load(proc, index), v_one, t_int);
- ssa_emit_store(proc, index, incr);
-
- body = ssa_add_block(proc, NULL, "for.index.body");
- done = ssa_add_block(proc, NULL, "for.index.done");
- ssaValue *cond = ssa_emit_comp(proc, Token_Lt, incr, count);
- ssa_emit_if(proc, cond, body, done);
- proc->curr_block = body;
-
- idx = ssa_emit_load(proc, index);
- if (val_type != NULL) {
- switch (expr_type->kind) {
- case Type_Array: {
- val = ssa_emit_load(proc, ssa_emit_array_ep(proc, expr, idx));
- } break;
- case Type_Slice: {
- ssaValue *elem = ssa_slice_elem(proc, expr);
- val = ssa_emit_load(proc, ssa_emit_ptr_offset(proc, elem, idx));
- } break;
- default:
- GB_PANIC("Cannot do range_indexed of %s", type_to_string(expr_type));
- break;
- }
- }
-
- if (val_) *val_ = val;
- if (idx_) *idx_ = idx;
- if (loop_) *loop_ = loop;
- if (done_) *done_ = done;
-}
-
-
-void ssa_build_range_string(ssaProcedure *proc, ssaValue *expr, Type *val_type,
- ssaValue **val_, ssaValue **idx_, ssaBlock **loop_, ssaBlock **done_) {
- ssaValue *count = v_zero;
- Type *expr_type = base_type(ssa_type(expr));
- switch (expr_type->kind) {
- case Type_Basic:
- count = ssa_string_len(proc, expr);
- break;
- default:
- GB_PANIC("Cannot do range_string of %s", type_to_string(expr_type));
- break;
- }
-
- ssaValue *val = NULL;
- ssaValue *idx = NULL;
- ssaBlock *loop = NULL;
- ssaBlock *done = NULL;
- ssaBlock *body = NULL;
-
- ssaValue *index = ssa_add_local_generated(proc, t_int);
- ssa_emit_store(proc, index, v_zero);
-
- ssaValue *offset_ = ssa_add_local_generated(proc, t_int);
- ssa_emit_store(proc, index, v_zero);
-
- loop = ssa_add_block(proc, NULL, "for.string.loop");
- ssa_emit_jump(proc, loop);
- proc->curr_block = loop;
-
-
-
- body = ssa_add_block(proc, NULL, "for.string.body");
- done = ssa_add_block(proc, NULL, "for.string.done");
-
- ssaValue *offset = ssa_emit_load(proc, offset_);
-
- ssaValue *cond = ssa_emit_comp(proc, Token_Lt, offset, count);
- ssa_emit_if(proc, cond, body, done);
- proc->curr_block = body;
-
-
- ssaValue *str_elem = ssa_emit_ptr_offset(proc, ssa_string_elem(proc, expr), offset);
- ssaValue *str_len = ssa_emit_arith(proc, Token_Sub, count, offset, t_int);
- ssaValue **args = gb_alloc_array(proc->module->allocator, ssaValue *, 1);
- args[0] = ssa_emit_string(proc, str_elem, str_len);
- ssaValue *rune_and_len = ssa_emit_global_call(proc, "__string_decode_rune", args, 1);
- ssaValue *len = ssa_emit_struct_ev(proc, rune_and_len, 1);
- ssa_emit_store(proc, offset_, ssa_emit_arith(proc, Token_Add, offset, len, t_int));
-
-
- idx = ssa_emit_load(proc, index);
- if (val_type != NULL) {
- val = ssa_emit_struct_ev(proc, rune_and_len, 0);
- }
- ssa_emit_increment(proc, index);
-
- if (val_) *val_ = val;
- if (idx_) *idx_ = idx;
- if (loop_) *loop_ = loop;
- if (done_) *done_ = done;
-}
-
-void ssa_build_range_interval(ssaProcedure *proc, AstNodeIntervalExpr *node, Type *val_type,
- ssaValue **val_, ssaValue **idx_, ssaBlock **loop_, ssaBlock **done_) {
-
- ssaValue *lower = ssa_build_expr(proc, node->left);
- ssaValue *upper = NULL;
-
- ssaValue *val = NULL;
- ssaValue *idx = NULL;
- ssaBlock *loop = NULL;
- ssaBlock *done = NULL;
- ssaBlock *body = NULL;
-
- if (val_type == NULL) {
- val_type = ssa_type(lower);
- }
- ssaValue *value = ssa_add_local_generated(proc, val_type);
- ssa_emit_store(proc, value, lower);
-
- ssaValue *index = ssa_add_local_generated(proc, t_int);
- ssa_emit_store(proc, index, ssa_make_const_int(proc->module->allocator, 0));
-
- loop = ssa_add_block(proc, NULL, "for.interval.loop");
- ssa_emit_jump(proc, loop);
- proc->curr_block = loop;
-
- body = ssa_add_block(proc, NULL, "for.interval.body");
- done = ssa_add_block(proc, NULL, "for.interval.done");
-
- upper = ssa_build_expr(proc, node->right);
-
- ssaValue *cond = ssa_emit_comp(proc, Token_Lt, ssa_emit_load(proc, value), upper);
- ssa_emit_if(proc, cond, body, done);
- proc->curr_block = body;
-
- if (value != NULL) {
- val = ssa_emit_load(proc, value);
- }
- idx = ssa_emit_load(proc, index);
-
- ssa_emit_increment(proc, value);
- ssa_emit_increment(proc, index);
-
- if (val_) *val_ = val;
- if (idx_) *idx_ = idx;
- if (loop_) *loop_ = loop;
- if (done_) *done_ = done;
-}
-
-
-void ssa_build_stmt_internal(ssaProcedure *proc, AstNode *node) {
- switch (node->kind) {
- case_ast_node(bs, EmptyStmt, node);
- case_end;
-
- case_ast_node(us, UsingStmt, node);
- AstNode *decl = unparen_expr(us->node);
- if (decl->kind == AstNode_GenericDecl) {
- ssa_build_stmt(proc, decl);
- }
- case_end;
-
- case_ast_node(ws, WhenStmt, node);
- ssa_build_when_stmt(proc, ws);
- case_end;
-
- case_ast_node(vd, ValueDecl, node);
- if (vd->is_var) {
- ssaModule *m = proc->module;
- gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&m->tmp_arena);
-
- if (vd->values.count == 0) { // declared and zero-initialized
- for_array(i, vd->names) {
- AstNode *name = vd->names.e[i];
- if (!ssa_is_blank_ident(name)) {
- ssa_add_local_for_identifier(proc, name, true);
- }
- }
- } else { // Tuple(s)
- Array(ssaAddr) lvals;
- ssaValueArray inits;
- array_init_reserve(&lvals, m->tmp_allocator, vd->names.count);
- array_init_reserve(&inits, m->tmp_allocator, vd->names.count);
-
- for_array(i, vd->names) {
- AstNode *name = vd->names.e[i];
- ssaAddr lval = ssa_make_addr(NULL, NULL);
- if (!ssa_is_blank_ident(name)) {
- ssa_add_local_for_identifier(proc, name, false);
- lval = ssa_build_addr(proc, name);
- }
-
- array_add(&lvals, lval);
- }
-
- for_array(i, vd->values) {
- ssaValue *init = ssa_build_expr(proc, vd->values.e[i]);
- Type *t = ssa_type(init);
- if (t->kind == Type_Tuple) {
- for (isize i = 0; i < t->Tuple.variable_count; i++) {
- Entity *e = t->Tuple.variables[i];
- ssaValue *v = ssa_emit_struct_ev(proc, init, i);
- array_add(&inits, v);
- }
- } else {
- array_add(&inits, init);
- }
- }
-
-
- for_array(i, inits) {
- if (lvals.e[i].addr == NULL) {
- continue;
- }
- ssaValue *v = ssa_emit_conv(proc, inits.e[i], ssa_addr_type(lvals.e[i]));
- ssa_addr_store(proc, lvals.e[i], v);
- }
- }
-
- gb_temp_arena_memory_end(tmp);
- } else {
- for_array(i, vd->names) {
- AstNode *ident = vd->names.e[i];
- GB_ASSERT(ident->kind == AstNode_Ident);
- Entity *e = entity_of_ident(proc->module->info, ident);
- GB_ASSERT(e != NULL);
- switch (e->kind) {
- case Entity_TypeName: {
- // NOTE(bill): Generate a new name
- // parent_proc.name-guid
- String ts_name = e->token.string;
- isize name_len = proc->name.len + 1 + ts_name.len + 1 + 10 + 1;
- u8 *name_text = gb_alloc_array(proc->module->allocator, u8, name_len);
- i32 guid = cast(i32)proc->module->members.entries.count;
- name_len = gb_snprintf(cast(char *)name_text, name_len, "%.*s.%.*s-%d", LIT(proc->name), LIT(ts_name), guid);
- String name = make_string(name_text, name_len-1);
-
- ssaValue *value = ssa_make_value_type_name(proc->module->allocator,
- name, e->type);
- map_string_set(&proc->module->type_names, hash_pointer(e->type), name);
- ssa_gen_global_type_name(proc->module, e, name);
- } break;
- case Entity_Procedure: {
- DeclInfo **decl_info = map_decl_info_get(&proc->module->info->entities, hash_pointer(e));
- GB_ASSERT(decl_info != NULL);
- DeclInfo *dl = *decl_info;
- ast_node(pd, ProcLit, dl->proc_decl);
- if (pd->body != NULL) {
- CheckerInfo *info = proc->module->info;
-
- if (map_entity_get(&proc->module->min_dep_map, hash_pointer(e)) == NULL) {
- // NOTE(bill): Nothing depends upon it so doesn't need to be built
- break;
- }
-
- // NOTE(bill): Generate a new name
- // parent.name-guid
- String original_name = e->token.string;
- String pd_name = original_name;
- if (pd->link_name.len > 0) {
- pd_name = pd->link_name;
- }
-
- isize name_len = proc->name.len + 1 + pd_name.len + 1 + 10 + 1;
- u8 *name_text = gb_alloc_array(proc->module->allocator, u8, name_len);
- i32 guid = cast(i32)proc->children.count;
- name_len = gb_snprintf(cast(char *)name_text, name_len, "%.*s.%.*s-%d", LIT(proc->name), LIT(pd_name), guid);
- String name = make_string(name_text, name_len-1);
-
-
- ssaValue *value = ssa_make_value_procedure(proc->module->allocator,
- proc->module, e, e->type, pd->type, pd->body, name);
-
- value->Proc.tags = pd->tags;
- value->Proc.parent = proc;
-
- ssa_module_add_value(proc->module, e, value);
- array_add(&proc->children, &value->Proc);
- array_add(&proc->module->procs_to_generate, value);
- } else {
- CheckerInfo *info = proc->module->info;
-
- // FFI - Foreign function interace
- String original_name = e->token.string;
- String name = original_name;
- if (pd->foreign_name.len > 0) {
- name = pd->foreign_name;
- }
-
- ssaValue *value = ssa_make_value_procedure(proc->module->allocator,
- proc->module, e, e->type, pd->type, pd->body, name);
-
- value->Proc.tags = pd->tags;
-
- ssa_module_add_value(proc->module, e, value);
- ssa_build_proc(value, proc);
-
- if (value->Proc.tags & ProcTag_foreign) {
- HashKey key = hash_string(name);
- ssaValue **prev_value = map_ssa_value_get(&proc->module->members, key);
- if (prev_value == NULL) {
- // NOTE(bill): Don't do mutliple declarations in the IR
- map_ssa_value_set(&proc->module->members, key, value);
- }
- } else {
- array_add(&proc->children, &value->Proc);
- }
- }
- } break;
- }
- }
- }
- case_end;
-
- case_ast_node(as, AssignStmt, node);
- ssa_emit_comment(proc, str_lit("AssignStmt"));
-
- ssaModule *m = proc->module;
- gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&m->tmp_arena);
-
- switch (as->op.kind) {
- case Token_Eq: {
- Array(ssaAddr) lvals;
- array_init(&lvals, m->tmp_allocator);
-
- for_array(i, as->lhs) {
- AstNode *lhs = as->lhs.e[i];
- ssaAddr lval = {0};
- if (!ssa_is_blank_ident(lhs)) {
- lval = ssa_build_addr(proc, lhs);
- }
- array_add(&lvals, lval);
- }
-
- if (as->lhs.count == as->rhs.count) {
- if (as->lhs.count == 1) {
- AstNode *rhs = as->rhs.e[0];
- ssaValue *init = ssa_build_expr(proc, rhs);
- ssa_addr_store(proc, lvals.e[0], init);
- } else {
- ssaValueArray inits;
- array_init_reserve(&inits, m->tmp_allocator, lvals.count);
-
- for_array(i, as->rhs) {
- ssaValue *init = ssa_build_expr(proc, as->rhs.e[i]);
- array_add(&inits, init);
- }
-
- for_array(i, inits) {
- ssa_addr_store(proc, lvals.e[i], inits.e[i]);
- }
- }
- } else {
- ssaValueArray inits;
- array_init_reserve(&inits, m->tmp_allocator, lvals.count);
-
- for_array(i, as->rhs) {
- ssaValue *init = ssa_build_expr(proc, as->rhs.e[i]);
- Type *t = ssa_type(init);
- // TODO(bill): refactor for code reuse as this is repeated a bit
- if (t->kind == Type_Tuple) {
- for (isize i = 0; i < t->Tuple.variable_count; i++) {
- Entity *e = t->Tuple.variables[i];
- ssaValue *v = ssa_emit_struct_ev(proc, init, i);
- array_add(&inits, v);
- }
- } else {
- array_add(&inits, init);
- }
- }
-
- for_array(i, inits) {
- ssa_addr_store(proc, lvals.e[i], inits.e[i]);
- }
- }
-
- } break;
-
- default: {
- // NOTE(bill): Only 1 += 1 is allowed, no tuples
- // +=, -=, etc
- i32 op = cast(i32)as->op.kind;
- op += Token_Add - Token_AddEq; // Convert += to +
- ssaAddr lhs = ssa_build_addr(proc, as->lhs.e[0]);
- ssaValue *value = ssa_build_expr(proc, as->rhs.e[0]);
- ssa_build_assign_op(proc, lhs, value, cast(TokenKind)op);
- } break;
- }
-
- gb_temp_arena_memory_end(tmp);
- case_end;
-
- case_ast_node(es, ExprStmt, node);
- // NOTE(bill): No need to use return value
- ssa_build_expr(proc, es->expr);
- case_end;
-
- case_ast_node(bs, BlockStmt, node);
- ssa_open_scope(proc);
- ssa_build_stmt_list(proc, bs->stmts);
- ssa_close_scope(proc, ssaDeferExit_Default, NULL);
- case_end;
-
- case_ast_node(ds, DeferStmt, node);
- ssa_emit_comment(proc, str_lit("DeferStmt"));
- isize scope_index = proc->scope_index;
- if (ds->stmt->kind == AstNode_BlockStmt) {
- scope_index--;
- }
- ssa_add_defer_node(proc, scope_index, ds->stmt);
- case_end;
-
- case_ast_node(rs, ReturnStmt, node);
- ssa_emit_comment(proc, str_lit("ReturnStmt"));
- ssaValue *v = NULL;
- TypeTuple *return_type_tuple = &proc->type->Proc.results->Tuple;
- isize return_count = proc->type->Proc.result_count;
- if (return_count == 0) {
- // No return values
- } else if (return_count == 1) {
- Entity *e = return_type_tuple->variables[0];
- v = ssa_emit_conv(proc, ssa_build_expr(proc, rs->results.e[0]), e->type);
- } else {
- gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&proc->module->tmp_arena);
-
- ssaValueArray results;
- array_init_reserve(&results, proc->module->tmp_allocator, return_count);
-
- for_array(res_index, rs->results) {
- ssaValue *res = ssa_build_expr(proc, rs->results.e[res_index]);
- Type *t = ssa_type(res);
- if (t->kind == Type_Tuple) {
- for (isize i = 0; i < t->Tuple.variable_count; i++) {
- Entity *e = t->Tuple.variables[i];
- ssaValue *v = ssa_emit_struct_ev(proc, res, i);
- array_add(&results, v);
- }
- } else {
- array_add(&results, res);
- }
- }
-
- Type *ret_type = proc->type->Proc.results;
- v = ssa_add_local_generated(proc, ret_type);
- for_array(i, results) {
- Entity *e = return_type_tuple->variables[i];
- ssaValue *res = ssa_emit_conv(proc, results.e[i], e->type);
- ssaValue *field = ssa_emit_struct_ep(proc, v, i);
- ssa_emit_store(proc, field, res);
- }
-
- v = ssa_emit_load(proc, v);
-
- gb_temp_arena_memory_end(tmp);
- }
- ssa_emit_return(proc, v);
-
- case_end;
-
- case_ast_node(is, IfStmt, node);
- ssa_emit_comment(proc, str_lit("IfStmt"));
- if (is->init != NULL) {
- ssaBlock *init = ssa_add_block(proc, node, "if.init");
- ssa_emit_jump(proc, init);
- proc->curr_block = init;
- ssa_build_stmt(proc, is->init);
- }
- ssaBlock *then = ssa_add_block(proc, node, "if.then");
- ssaBlock *done = ssa_add_block(proc, node, "if.done"); // NOTE(bill): Append later
- ssaBlock *else_ = done;
- if (is->else_stmt != NULL) {
- else_ = ssa_add_block(proc, is->else_stmt, "if.else");
- }
-
- ssa_build_cond(proc, is->cond, then, else_);
- proc->curr_block = then;
-
- ssa_open_scope(proc);
- ssa_build_stmt(proc, is->body);
- ssa_close_scope(proc, ssaDeferExit_Default, NULL);
-
- ssa_emit_jump(proc, done);
-
- if (is->else_stmt != NULL) {
- proc->curr_block = else_;
-
- ssa_open_scope(proc);
- ssa_build_stmt(proc, is->else_stmt);
- ssa_close_scope(proc, ssaDeferExit_Default, NULL);
-
- ssa_emit_jump(proc, done);
- }
- proc->curr_block = done;
- case_end;
-
- case_ast_node(ws, WhileStmt, node);
- ssa_emit_comment(proc, str_lit("WhileStmt"));
- if (ws->init != NULL) {
- ssaBlock *init = ssa_add_block(proc, node, "while.init");
- ssa_emit_jump(proc, init);
- proc->curr_block = init;
- ssa_build_stmt(proc, ws->init);
- }
- ssaBlock *body = ssa_add_block(proc, node, "while.body");
- ssaBlock *done = ssa_add_block(proc, node, "while.done"); // NOTE(bill): Append later
-
- ssaBlock *loop = body;
-
- if (ws->cond != NULL) {
- loop = ssa_add_block(proc, node, "while.loop");
- }
- ssa_emit_jump(proc, loop);
- proc->curr_block = loop;
- if (loop != body) {
- ssa_build_cond(proc, ws->cond, body, done);
- proc->curr_block = body;
- }
-
- ssa_push_target_list(proc, done, loop, NULL);
-
- ssa_open_scope(proc);
- ssa_build_stmt(proc, ws->body);
- ssa_close_scope(proc, ssaDeferExit_Default, NULL);
-
- ssa_pop_target_list(proc);
- ssa_emit_jump(proc, loop);
-
- proc->curr_block = done;
- case_end;
-
-
- case_ast_node(rs, ForStmt, node);
- ssa_emit_comment(proc, str_lit("ForStmt"));
-
- Type *val_type = NULL;
- Type *idx_type = NULL;
- if (rs->value != NULL && !ssa_is_blank_ident(rs->value)) {
- val_type = type_of_expr(proc->module->info, rs->value);
- }
- if (rs->index != NULL && !ssa_is_blank_ident(rs->index)) {
- idx_type = type_of_expr(proc->module->info, rs->index);
- }
-
- if (val_type != NULL) {
- ssa_add_local_for_identifier(proc, rs->value, true);
- }
- if (idx_type != NULL) {
- ssa_add_local_for_identifier(proc, rs->index, true);
- }
-
- ssaValue *val = NULL;
- ssaValue *index = NULL;
- ssaBlock *loop = NULL;
- ssaBlock *done = NULL;
-
- if (rs->expr->kind == AstNode_IntervalExpr) {
- ssa_build_range_interval(proc, &rs->expr->IntervalExpr, val_type, &val, &index, &loop, &done);
- } else {
- Type *expr_type = type_of_expr(proc->module->info, rs->expr);
- Type *et = base_type(type_deref(expr_type));
- bool deref = is_type_pointer(expr_type);
- switch (et->kind) {
- case Type_Array: {
- ssaValue *array = ssa_build_addr(proc, rs->expr).addr;
- if (deref) {
- array = ssa_emit_load(proc, array);
- }
- ssa_build_range_indexed(proc, array, val_type, &val, &index, &loop, &done);
- } break;
- case Type_Slice: {
- ssaValue *slice = ssa_build_expr(proc, rs->expr);
- if (deref) {
- slice = ssa_emit_load(proc, slice);
- }
- ssa_build_range_indexed(proc, slice, val_type, &val, &index, &loop, &done);
- } break;
- case Type_Basic: {
- ssaValue *string = ssa_build_expr(proc, rs->expr);
- if (deref) {
- string = ssa_emit_load(proc, string);
- }
- if (is_type_untyped(expr_type)) {
- ssaValue *s = ssa_add_local_generated(proc, t_string);
- ssa_emit_store(proc, s, string);
- string = ssa_emit_load(proc, s);
- }
- ssa_build_range_string(proc, string, val_type, &val, &index, &loop, &done);
- } break;
- default:
- GB_PANIC("Cannot range over %s", type_to_string(expr_type));
- break;
- }
- }
-
- ssaAddr val_addr = {0};
- ssaAddr idx_addr = {0};
- if (val_type != NULL) {
- val_addr = ssa_build_addr(proc, rs->value);
- }
- if (idx_type != NULL) {
- idx_addr = ssa_build_addr(proc, rs->index);
- }
- if (val_type != NULL) {
- ssa_addr_store(proc, val_addr, val);
- }
- if (idx_type != NULL) {
- ssa_addr_store(proc, idx_addr, index);
- }
-
- ssa_push_target_list(proc, done, loop, NULL);
-
- ssa_open_scope(proc);
- ssa_build_stmt(proc, rs->body);
- ssa_close_scope(proc, ssaDeferExit_Default, NULL);
-
- ssa_pop_target_list(proc);
- ssa_emit_jump(proc, loop);
- proc->curr_block = done;
- case_end;
-
- case_ast_node(ms, MatchStmt, node);
- ssa_emit_comment(proc, str_lit("MatchStmt"));
- if (ms->init != NULL) {
- ssa_build_stmt(proc, ms->init);
- }
- ssaValue *tag = v_true;
- if (ms->tag != NULL) {
- tag = ssa_build_expr(proc, ms->tag);
- }
- ssaBlock *done = ssa_add_block(proc, node, "match.done"); // NOTE(bill): Append later
-
- ast_node(body, BlockStmt, ms->body);
-
- AstNodeArray default_stmts = {0};
- ssaBlock *default_fall = NULL;
- ssaBlock *default_block = NULL;
-
- ssaBlock *fall = NULL;
- bool append_fall = false;
-
- isize case_count = body->stmts.count;
- for_array(i, body->stmts) {
- AstNode *clause = body->stmts.e[i];
- ssaBlock *body = fall;
-
- ast_node(cc, CaseClause, clause);
-
- if (body == NULL) {
- if (cc->list.count == 0) {
- body = ssa_add_block(proc, clause, "match.dflt.body");
- } else {
- body = ssa_add_block(proc, clause, "match.case.body");
- }
- }
- if (append_fall && body == fall) {
- append_fall = false;
- }
-
- fall = done;
- if (i+1 < case_count) {
- append_fall = true;
- fall = ssa_add_block(proc, clause, "match.fall.body");
- }
-
- if (cc->list.count == 0) {
- // default case
- default_stmts = cc->stmts;
- default_fall = fall;
- default_block = body;
- continue;
- }
-
- ssaBlock *next_cond = NULL;
- for_array(j, cc->list) {
- AstNode *expr = cc->list.e[j];
- next_cond = ssa_add_block(proc, clause, "match.case.next");
-
- ssaValue *cond = ssa_emit_comp(proc, Token_CmpEq, tag, ssa_build_expr(proc, expr));
- ssa_emit_if(proc, cond, body, next_cond);
- proc->curr_block = next_cond;
- }
- proc->curr_block = body;
-
- ssa_push_target_list(proc, done, NULL, fall);
- ssa_open_scope(proc);
- ssa_build_stmt_list(proc, cc->stmts);
- ssa_close_scope(proc, ssaDeferExit_Default, body);
- ssa_pop_target_list(proc);
-
- ssa_emit_jump(proc, done);
- proc->curr_block = next_cond;
- }
-
- if (default_block != NULL) {
- ssa_emit_jump(proc, default_block);
- proc->curr_block = default_block;
-
- ssa_push_target_list(proc, done, NULL, default_fall);
- ssa_open_scope(proc);
- ssa_build_stmt_list(proc, default_stmts);
- ssa_close_scope(proc, ssaDeferExit_Default, default_block);
- ssa_pop_target_list(proc);
- }
-
- ssa_emit_jump(proc, done);
- proc->curr_block = done;
- case_end;
-
-
- case_ast_node(ms, TypeMatchStmt, node);
- ssa_emit_comment(proc, str_lit("TypeMatchStmt"));
- gbAllocator allocator = proc->module->allocator;
-
- ssaValue *parent = ssa_build_expr(proc, ms->tag);
- bool is_union_ptr = false;
- bool is_any = false;
- GB_ASSERT(check_valid_type_match_type(ssa_type(parent), &is_union_ptr, &is_any));
-
- ssaValue *tag_index = NULL;
- ssaValue *union_data = NULL;
- if (is_union_ptr) {
- ssa_emit_comment(proc, str_lit("get union's tag"));
- tag_index = ssa_emit_load(proc, ssa_emit_union_tag_ptr(proc, parent));
- union_data = ssa_emit_conv(proc, parent, t_rawptr);
- }
-
- ssaBlock *start_block = ssa_add_block(proc, node, "type-match.case.first");
- ssa_emit_jump(proc, start_block);
- proc->curr_block = start_block;
-
- ssaBlock *done = ssa_add_block(proc, node, "type-match.done"); // NOTE(bill): Append later
-
- ast_node(body, BlockStmt, ms->body);
-
- String tag_var_name = ms->var->Ident.string;
-
- AstNodeArray default_stmts = {0};
- ssaBlock *default_block = NULL;
-
-
- isize case_count = body->stmts.count;
- for_array(i, body->stmts) {
- AstNode *clause = body->stmts.e[i];
- ast_node(cc, CaseClause, clause);
-
- if (cc->list.count == 0) {
- // default case
- default_stmts = cc->stmts;
- default_block = ssa_add_block(proc, clause, "type-match.dflt.body");
- continue;
- }
-
-
- ssaBlock *body = ssa_add_block(proc, clause, "type-match.case.body");
-
- Scope *scope = *map_scope_get(&proc->module->info->scopes, hash_pointer(clause));
- Entity *tag_var_entity = current_scope_lookup_entity(scope, tag_var_name);
- GB_ASSERT_MSG(tag_var_entity != NULL, "%.*s", LIT(tag_var_name));
-
- ssaBlock *next_cond = NULL;
- ssaValue *cond = NULL;
-
- if (is_union_ptr) {
- Type *bt = type_deref(tag_var_entity->type);
- ssaValue *index = NULL;
- Type *ut = base_type(type_deref(ssa_type(parent)));
- GB_ASSERT(ut->Record.kind == TypeRecord_Union);
- for (isize field_index = 1; field_index < ut->Record.field_count; field_index++) {
- Entity *f = ut->Record.fields[field_index];
- if (are_types_identical(f->type, bt)) {
- index = ssa_make_const_int(allocator, field_index);
- break;
- }
- }
- GB_ASSERT(index != NULL);
-
- ssaValue *tag_var = ssa_add_local(proc, tag_var_entity);
- ssaValue *data_ptr = ssa_emit_conv(proc, union_data, tag_var_entity->type);
- ssa_emit_store(proc, tag_var, data_ptr);
-
- cond = ssa_emit_comp(proc, Token_CmpEq, tag_index, index);
- } else if (is_any) {
- Type *type = tag_var_entity->type;
- ssaValue *any_data = ssa_emit_struct_ev(proc, parent, 1);
- ssaValue *data = ssa_emit_conv(proc, any_data, make_type_pointer(proc->module->allocator, type));
- ssa_module_add_value(proc->module, tag_var_entity, data);
-
- ssaValue *any_ti = ssa_emit_struct_ev(proc, parent, 0);
- ssaValue *case_ti = ssa_type_info(proc, type);
- cond = ssa_emit_comp(proc, Token_CmpEq, any_ti, case_ti);
- } else {
- GB_PANIC("Invalid type for type match statement");
- }
-
- next_cond = ssa_add_block(proc, clause, "type-match.case.next");
- ssa_emit_if(proc, cond, body, next_cond);
- proc->curr_block = next_cond;
-
- proc->curr_block = body;
-
- ssa_push_target_list(proc, done, NULL, NULL);
- ssa_open_scope(proc);
- ssa_build_stmt_list(proc, cc->stmts);
- ssa_close_scope(proc, ssaDeferExit_Default, body);
- ssa_pop_target_list(proc);
-
- ssa_emit_jump(proc, done);
- proc->curr_block = next_cond;
- }
-
- if (default_block != NULL) {
- ssa_emit_jump(proc, default_block);
- proc->curr_block = default_block;
-
- ssa_push_target_list(proc, done, NULL, NULL);
- ssa_open_scope(proc);
- ssa_build_stmt_list(proc, default_stmts);
- ssa_close_scope(proc, ssaDeferExit_Default, default_block);
- ssa_pop_target_list(proc);
- }
-
- ssa_emit_jump(proc, done);
- proc->curr_block = done;
- case_end;
-
- case_ast_node(bs, BranchStmt, node);
- ssaBlock *block = NULL;
- switch (bs->token.kind) {
- case Token_break:
- for (ssaTargetList *t = proc->target_list; t != NULL && block == NULL; t = t->prev) {
- block = t->break_;
- }
- break;
- case Token_continue:
- for (ssaTargetList *t = proc->target_list; t != NULL && block == NULL; t = t->prev) {
- block = t->continue_;
- }
- break;
- case Token_fallthrough:
- for (ssaTargetList *t = proc->target_list; t != NULL && block == NULL; t = t->prev) {
- block = t->fallthrough_;
- }
- break;
- }
- if (block != NULL) {
- ssa_emit_defer_stmts(proc, ssaDeferExit_Branch, block);
- }
- switch (bs->token.kind) {
- case Token_break: ssa_emit_comment(proc, str_lit("break")); break;
- case Token_continue: ssa_emit_comment(proc, str_lit("continue")); break;
- case Token_fallthrough: ssa_emit_comment(proc, str_lit("fallthrough")); break;
- }
- ssa_emit_jump(proc, block);
- ssa_emit_unreachable(proc);
- case_end;
-
-
-
- case_ast_node(pa, PushAllocator, node);
- ssa_emit_comment(proc, str_lit("PushAllocator"));
- ssa_open_scope(proc);
-
- ssaValue *context_ptr = ssa_find_implicit_value_backing(proc, ImplicitValue_context);
- ssaValue *prev_context = ssa_add_local_generated(proc, t_context);
- ssa_emit_store(proc, prev_context, ssa_emit_load(proc, context_ptr));
-
- ssa_add_defer_instr(proc, proc->scope_index, ssa_make_instr_store(proc, context_ptr, ssa_emit_load(proc, prev_context)));
-
- ssaValue *gep = ssa_emit_struct_ep(proc, context_ptr, 1);
- ssa_emit_store(proc, gep, ssa_build_expr(proc, pa->expr));
-
- ssa_build_stmt(proc, pa->body);
-
- ssa_close_scope(proc, ssaDeferExit_Default, NULL);
- case_end;
-
-
- case_ast_node(pa, PushContext, node);
- ssa_emit_comment(proc, str_lit("PushContext"));
- ssa_open_scope(proc);
-
- ssaValue *context_ptr = ssa_find_implicit_value_backing(proc, ImplicitValue_context);
- ssaValue *prev_context = ssa_add_local_generated(proc, t_context);
- ssa_emit_store(proc, prev_context, ssa_emit_load(proc, context_ptr));
-
- ssa_add_defer_instr(proc, proc->scope_index, ssa_make_instr_store(proc, context_ptr, ssa_emit_load(proc, prev_context)));
-
- ssa_emit_store(proc, context_ptr, ssa_build_expr(proc, pa->expr));
-
- ssa_build_stmt(proc, pa->body);
-
- ssa_close_scope(proc, ssaDeferExit_Default, NULL);
- case_end;
-
-
- }
-}
-
-
-
-
-
-
-
-////////////////////////////////////////////////////////////////
-//
-// @Procedure
-//
-////////////////////////////////////////////////////////////////
-
-void ssa_number_proc_registers(ssaProcedure *proc) {
- i32 reg_index = 0;
- for_array(i, proc->blocks) {
- ssaBlock *b = proc->blocks.e[i];
- b->index = i;
- for_array(j, b->instrs) {
- ssaValue *value = b->instrs.e[j];
- GB_ASSERT(value->kind == ssaValue_Instr);
- ssaInstr *instr = &value->Instr;
- if (ssa_instr_type(instr) == NULL) { // NOTE(bill): Ignore non-returning instructions
- continue;
- }
- value->index = reg_index;
- reg_index++;
- }
- }
-}
-
-void ssa_begin_procedure_body(ssaProcedure *proc) {
- array_add(&proc->module->procs, proc);
-
- array_init(&proc->blocks, heap_allocator());
- array_init(&proc->defer_stmts, heap_allocator());
- array_init(&proc->children, heap_allocator());
-
- proc->decl_block = ssa_add_block(proc, proc->type_expr, "decls");
- proc->entry_block = ssa_add_block(proc, proc->type_expr, "entry");
- proc->curr_block = proc->entry_block;
-
- if (proc->type->Proc.params != NULL) {
- TypeTuple *params = &proc->type->Proc.params->Tuple;
- for (isize i = 0; i < params->variable_count; i++) {
- Entity *e = params->variables[i];
- if (!str_eq(e->token.string, str_lit("")) &&
- !str_eq(e->token.string, str_lit("_"))) {
- ssaValue *param = ssa_add_param(proc, e);
- array_add(&proc->params, param);
- }
- }
- }
-}
-
-
-void ssa_end_procedure_body(ssaProcedure *proc) {
- if (proc->type->Proc.result_count == 0) {
- ssa_emit_return(proc, NULL);
- }
-
- if (proc->curr_block->instrs.count == 0) {
- ssa_emit_unreachable(proc);
- }
-
- proc->curr_block = proc->decl_block;
- ssa_emit_jump(proc, proc->entry_block);
-
- ssa_number_proc_registers(proc);
-}
-
-
-void ssa_insert_code_before_proc(ssaProcedure* proc, ssaProcedure *parent) {
- if (parent == NULL) {
- if (str_eq(proc->name, str_lit("main"))) {
- ssa_emit_startup_runtime(proc);
- }
- }
-}
-
-void ssa_build_proc(ssaValue *value, ssaProcedure *parent) {
- ssaProcedure *proc = &value->Proc;
-
- proc->parent = parent;
-
- if (proc->entity != NULL) {
- ssaModule *m = proc->module;
- CheckerInfo *info = m->info;
- Entity *e = proc->entity;
- String filename = e->token.pos.file;
- AstFile **found = map_ast_file_get(&info->files, hash_string(filename));
- GB_ASSERT(found != NULL);
- AstFile *f = *found;
- ssaDebugInfo *di_file = NULL;
-
- ssaDebugInfo **di_file_found = map_ssa_debug_info_get(&m->debug_info, hash_pointer(f));
- if (di_file_found) {
- di_file = *di_file_found;
- GB_ASSERT(di_file->kind == ssaDebugInfo_File);
- } else {
- di_file = ssa_add_debug_info_file(proc, f);
- }
-
- ssa_add_debug_info_proc(proc, e, proc->name, di_file);
- }
-
- if (proc->body != NULL) {
- u32 prev_stmt_state_flags = proc->module->stmt_state_flags;
-
- if (proc->tags != 0) {
- u32 in = proc->tags;
- u32 out = proc->module->stmt_state_flags;
- if (in & ProcTag_bounds_check) {
- out |= StmtStateFlag_bounds_check;
- out &= ~StmtStateFlag_no_bounds_check;
- } else if (in & ProcTag_no_bounds_check) {
- out |= StmtStateFlag_no_bounds_check;
- out &= ~StmtStateFlag_bounds_check;
- }
- proc->module->stmt_state_flags = out;
- }
-
-
- ssa_begin_procedure_body(proc);
- ssa_insert_code_before_proc(proc, parent);
- ssa_build_stmt(proc, proc->body);
- ssa_end_procedure_body(proc);
-
- proc->module->stmt_state_flags = prev_stmt_state_flags;
- }
-}
-
-
-
-
-
-
-
-////////////////////////////////////////////////////////////////
-//
-// @Module
-//
-////////////////////////////////////////////////////////////////
-
-
-
-void ssa_module_add_value(ssaModule *m, Entity *e, ssaValue *v) {
- map_ssa_value_set(&m->values, hash_pointer(e), v);
-}
-
-void ssa_init_module(ssaModule *m, Checker *c, BuildContext *build_context) {
- // TODO(bill): Determine a decent size for the arena
- isize token_count = c->parser->total_token_count;
- isize arena_size = 4 * token_count * gb_size_of(ssaValue);
- gb_arena_init_from_allocator(&m->arena, heap_allocator(), arena_size);
- gb_arena_init_from_allocator(&m->tmp_arena, heap_allocator(), arena_size);
- m->allocator = gb_arena_allocator(&m->arena);
- m->tmp_allocator = gb_arena_allocator(&m->tmp_arena);
- m->info = &c->info;
- m->sizes = c->sizes;
- m->build_context = build_context;
-
- map_ssa_value_init(&m->values, heap_allocator());
- map_ssa_value_init(&m->members, heap_allocator());
- map_ssa_debug_info_init(&m->debug_info, heap_allocator());
- map_string_init(&m->type_names, heap_allocator());
- array_init(&m->procs, heap_allocator());
- array_init(&m->procs_to_generate, heap_allocator());
-
- // Default states
- m->stmt_state_flags = 0;
- m->stmt_state_flags |= StmtStateFlag_bounds_check;
-
- {
- // Add type info data
- {
- String name = str_lit(SSA_TYPE_INFO_DATA_NAME);
- isize count = c->info.type_info_map.entries.count;
- Entity *e = make_entity_variable(m->allocator, NULL, make_token_ident(name), make_type_array(m->allocator, t_type_info, count));
- ssaValue *g = ssa_make_value_global(m->allocator, e, NULL);
- g->Global.is_private = true;
- ssa_module_add_value(m, e, g);
- map_ssa_value_set(&m->members, hash_string(name), g);
- }
-
- // Type info member buffer
- {
- // NOTE(bill): Removes need for heap allocation by making it global memory
- isize count = 0;
-
- for_array(entry_index, m->info->type_info_map.entries) {
- MapIsizeEntry *entry = &m->info->type_info_map.entries.e[entry_index];
- Type *t = cast(Type *)cast(uintptr)entry->key.key;
-
- switch (t->kind) {
- case Type_Record:
- switch (t->Record.kind) {
- case TypeRecord_Struct:
- case TypeRecord_RawUnion:
- count += t->Record.field_count;
- }
- break;
- case Type_Tuple:
- count += t->Tuple.variable_count;
- break;
- }
- }
-
- String name = str_lit(SSA_TYPE_INFO_DATA_MEMBER_NAME);
- Entity *e = make_entity_variable(m->allocator, NULL, make_token_ident(name),
- make_type_array(m->allocator, t_type_info_member, count));
- ssaValue *g = ssa_make_value_global(m->allocator, e, NULL);
- ssa_module_add_value(m, e, g);
- map_ssa_value_set(&m->members, hash_string(name), g);
- }
- }
-
- {
- ssaDebugInfo *di = ssa_alloc_debug_info(m->allocator, ssaDebugInfo_CompileUnit);
- di->CompileUnit.file = m->info->files.entries.e[0].value; // Zeroth is the init file
- di->CompileUnit.producer = str_lit("odin");
-
- map_ssa_debug_info_set(&m->debug_info, hash_pointer(m), di);
- }
-}
-
-void ssa_destroy_module(ssaModule *m) {
- map_ssa_value_destroy(&m->values);
- map_ssa_value_destroy(&m->members);
- map_string_destroy(&m->type_names);
- map_ssa_debug_info_destroy(&m->debug_info);
- array_free(&m->procs_to_generate);
- gb_arena_free(&m->arena);
-}
-
-
-
-////////////////////////////////////////////////////////////////
-//
-// @Code Generation
-//
-////////////////////////////////////////////////////////////////
-
-
-bool ssa_gen_init(ssaGen *s, Checker *c, BuildContext *build_context) {
- if (global_error_collector.count != 0) {
- return false;
- }
-
- isize tc = c->parser->total_token_count;
- if (tc < 2) {
- return false;
- }
-
- ssa_init_module(&s->module, c, build_context);
- s->module.generate_debug_info = false;
-
- // TODO(bill): generate appropriate output name
- int pos = cast(int)string_extension_position(c->parser->init_fullpath);
- gbFileError err = gb_file_create(&s->output_file, gb_bprintf("%.*s.ll", pos, c->parser->init_fullpath.text));
- if (err != gbFileError_None) {
- return false;
- }
-
- return true;
-}
-
-void ssa_gen_destroy(ssaGen *s) {
- ssa_destroy_module(&s->module);
- gb_file_close(&s->output_file);
-}
-
-String ssa_mangle_name(ssaGen *s, String path, String name) {
- // NOTE(bill): prefix names not in the init scope
- // TODO(bill): make robust and not just rely on the file's name
-
- ssaModule *m = &s->module;
- CheckerInfo *info = m->info;
- gbAllocator a = m->allocator;
- AstFile *file = *map_ast_file_get(&info->files, hash_string(path));
-
- char *str = gb_alloc_array(a, char, path.len+1);
- gb_memmove(str, path.text, path.len);
- str[path.len] = 0;
- for (isize i = 0; i < path.len; i++) {
- if (str[i] == '\\') {
- str[i] = '/';
- }
- }
-
- char const *base = gb_path_base_name(str);
- char const *ext = gb_path_extension(base);
- isize base_len = ext-1-base;
-
- isize max_len = base_len + 1 + 10 + 1 + name.len;
- u8 *new_name = gb_alloc_array(a, u8, max_len);
- isize new_name_len = gb_snprintf(
- cast(char *)new_name, max_len,
- "%.*s-%u.%.*s",
- cast(int)base_len, base,
- file->id,
- LIT(name));
-
- return make_string(new_name, new_name_len-1);
-}
-
-ssaValue *ssa_get_type_info_ptr(ssaProcedure *proc, ssaValue *type_info_data, Type *type) {
- i32 index = cast(i32)ssa_type_info_index(proc->module->info, type);
- // gb_printf_err("%d %s\n", index, type_to_string(type));
- ssaValue *ptr = ssa_emit_array_epi(proc, type_info_data, index);
- return ssa_emit_bitcast(proc, ptr, t_type_info_ptr);
-}
-
-ssaValue *ssa_type_info_member_offset(ssaProcedure *proc, ssaValue *data, isize count, i32 *index) {
- ssaValue *offset = ssa_emit_array_epi(proc, data, *index);
- *index += count;
- return offset;
-}
-
-void ssa_gen_tree(ssaGen *s) {
- ssaModule *m = &s->module;
- CheckerInfo *info = m->info;
- gbAllocator a = m->allocator;
-
- if (v_zero == NULL) {
- v_zero = ssa_make_const_int (m->allocator, 0);
- v_one = ssa_make_const_int (m->allocator, 1);
- v_zero32 = ssa_make_const_i32 (m->allocator, 0);
- v_one32 = ssa_make_const_i32 (m->allocator, 1);
- v_two32 = ssa_make_const_i32 (m->allocator, 2);
- v_false = ssa_make_const_bool(m->allocator, false);
- v_true = ssa_make_const_bool(m->allocator, true);
- }
-
- isize global_variable_max_count = 0;
- Entity *entry_point = NULL;
- bool has_dll_main = false;
- bool has_win_main = false;
-
- for_array(i, info->entities.entries) {
- MapDeclInfoEntry *entry = &info->entities.entries.e[i];
- Entity *e = cast(Entity *)cast(uintptr)entry->key.key;
- String name = e->token.string;
- if (e->kind == Entity_Variable) {
- global_variable_max_count++;
- } else if (e->kind == Entity_Procedure && !e->scope->is_global) {
- if (e->scope->is_init && str_eq(name, str_lit("main"))) {
- entry_point = e;
- }
- if ((e->Procedure.tags & ProcTag_export) != 0 ||
- (e->Procedure.link_name.len > 0) ||
- (e->scope->is_file && e->Procedure.link_name.len > 0)) {
- if (!has_dll_main && str_eq(name, str_lit("DllMain"))) {
- has_dll_main = true;
- } else if (!has_win_main && str_eq(name, str_lit("WinMain"))) {
- has_win_main = true;
- }
- }
- }
- }
-
- typedef struct ssaGlobalVariable {
- ssaValue *var, *init;
- DeclInfo *decl;
- } ssaGlobalVariable;
- Array(ssaGlobalVariable) global_variables;
- array_init_reserve(&global_variables, m->tmp_allocator, global_variable_max_count);
-
- m->entry_point_entity = entry_point;
- m->min_dep_map = generate_minimum_dependency_map(info, entry_point);
-
- for_array(i, info->entities.entries) {
- MapDeclInfoEntry *entry = &info->entities.entries.e[i];
- Entity *e = cast(Entity *)entry->key.ptr;
- String name = e->token.string;
- DeclInfo *decl = entry->value;
- Scope *scope = e->scope;
-
- if (!scope->is_file) {
- continue;
- }
-
- if (map_entity_get(&m->min_dep_map, hash_pointer(e)) == NULL) {
- // NOTE(bill): Nothing depends upon it so doesn't need to be built
- continue;
- }
-
- if (!scope->is_global) {
- if (e->kind == Entity_Procedure && (e->Procedure.tags & ProcTag_export) != 0) {
- } else if (e->kind == Entity_Procedure && e->Procedure.link_name.len > 0) {
- } else if (scope->is_init && e->kind == Entity_Procedure && str_eq(name, str_lit("main"))) {
- } else {
- name = ssa_mangle_name(s, e->token.pos.file, name);
- }
- }
-
-
- switch (e->kind) {
- case Entity_TypeName:
- GB_ASSERT(e->type->kind == Type_Named);
- map_string_set(&m->type_names, hash_pointer(e->type), name);
- ssa_gen_global_type_name(m, e, name);
- break;
-
- case Entity_Variable: {
- ssaValue *g = ssa_make_value_global(a, e, NULL);
- if (decl->var_decl_tags & VarDeclTag_thread_local) {
- g->Global.is_thread_local = true;
- }
- ssaGlobalVariable var = {0};
- var.var = g;
- var.decl = decl;
-
- if (decl->init_expr != NULL) {
- TypeAndValue *tav = map_tav_get(&info->types, hash_pointer(decl->init_expr));
- if (tav != NULL) {
- if (tav->value.kind != ExactValue_Invalid) {
- ExactValue v = tav->value;
- // if (v.kind != ExactValue_String) {
- g->Global.value = ssa_add_module_constant(m, tav->type, v);
- // }
- }
- }
- }
-
- if (g->Global.value == NULL) {
- array_add(&global_variables, var);
- }
-
- ssa_module_add_value(m, e, g);
- map_ssa_value_set(&m->members, hash_string(name), g);
- } break;
-
- case Entity_Procedure: {
- ast_node(pd, ProcLit, decl->proc_decl);
- String original_name = name;
- AstNode *body = pd->body;
- if (e->Procedure.is_foreign) {
- name = e->token.string; // NOTE(bill): Don't use the mangled name
- }
- if (pd->foreign_name.len > 0) {
- name = pd->foreign_name;
- } else if (pd->link_name.len > 0) {
- name = pd->link_name;
- }
-
- ssaValue *p = ssa_make_value_procedure(a, m, e, e->type, decl->type_expr, body, name);
- p->Proc.tags = pd->tags;
-
- ssa_module_add_value(m, e, p);
- HashKey hash_name = hash_string(name);
- if (map_ssa_value_get(&m->members, hash_name) == NULL) {
- map_ssa_value_set(&m->members, hash_name, p);
- }
- } break;
- }
- }
-
- for_array(i, m->members.entries) {
- MapSsaValueEntry *entry = &m->members.entries.e[i];
- ssaValue *v = entry->value;
- if (v->kind == ssaValue_Proc) {
- ssa_build_proc(v, NULL);
- }
- }
-
- ssaDebugInfo *compile_unit = m->debug_info.entries.e[0].value;
- GB_ASSERT(compile_unit->kind == ssaDebugInfo_CompileUnit);
- ssaDebugInfo *all_procs = ssa_alloc_debug_info(m->allocator, ssaDebugInfo_AllProcs);
-
- isize all_proc_max_count = 0;
- for_array(i, m->debug_info.entries) {
- MapSsaDebugInfoEntry *entry = &m->debug_info.entries.e[i];
- ssaDebugInfo *di = entry->value;
- di->id = i;
- if (di->kind == ssaDebugInfo_Proc) {
- all_proc_max_count++;
- }
- }
-
- array_init_reserve(&all_procs->AllProcs.procs, m->allocator, all_proc_max_count);
- map_ssa_debug_info_set(&m->debug_info, hash_pointer(all_procs), all_procs); // NOTE(bill): This doesn't need to be mapped
- compile_unit->CompileUnit.all_procs = all_procs;
-
-
- for_array(i, m->debug_info.entries) {
- MapSsaDebugInfoEntry *entry = &m->debug_info.entries.e[i];
- ssaDebugInfo *di = entry->value;
- di->id = i;
- if (di->kind == ssaDebugInfo_Proc) {
- array_add(&all_procs->AllProcs.procs, di);
- }
- }
-
-#if defined(GB_SYSTEM_WINDOWS)
- if (m->build_context->is_dll && !has_dll_main) {
- // DllMain :: proc(inst: rawptr, reason: u32, reserved: rawptr) -> i32
- String name = str_lit("DllMain");
- Type *proc_params = make_type_tuple(a);
- Type *proc_results = make_type_tuple(a);
-
- Scope *proc_scope = gb_alloc_item(a, Scope);
-
- proc_params->Tuple.variables = gb_alloc_array(a, Entity *, 3);
- proc_params->Tuple.variable_count = 3;
-
- proc_results->Tuple.variables = gb_alloc_array(a, Entity *, 1);
- proc_results->Tuple.variable_count = 1;
-
- proc_params->Tuple.variables[0] = make_entity_param(a, proc_scope, blank_token, t_rawptr, false);
- proc_params->Tuple.variables[1] = make_entity_param(a, proc_scope, make_token_ident(str_lit("reason")), t_i32, false);
- proc_params->Tuple.variables[2] = make_entity_param(a, proc_scope, blank_token, t_rawptr, false);
-
- proc_results->Tuple.variables[0] = make_entity_param(a, proc_scope, empty_token, t_i32, false);
-
-
- Type *proc_type = make_type_proc(a, proc_scope,
- proc_params, 3,
- proc_results, 1, false, ProcCC_Std);
-
- AstNode *body = gb_alloc_item(a, AstNode);
- Entity *e = make_entity_procedure(a, NULL, make_token_ident(name), proc_type, 0);
- ssaValue *p = ssa_make_value_procedure(a, m, e, proc_type, NULL, body, name);
-
- map_ssa_value_set(&m->values, hash_pointer(e), p);
- map_ssa_value_set(&m->members, hash_string(name), p);
-
- ssaProcedure *proc = &p->Proc;
- proc->tags = ProcTag_no_inline; // TODO(bill): is no_inline a good idea?
- e->Procedure.link_name = name;
-
- ssa_begin_procedure_body(proc);
-
- // NOTE(bill): https://msdn.microsoft.com/en-us/library/windows/desktop/ms682583(v=vs.85).aspx
- // DLL_PROCESS_ATTACH == 1
-
- ssaAddr reason_addr = ssa_build_addr_from_entity(proc, proc_params->Tuple.variables[1], NULL);
- ssaValue *cond = ssa_emit_comp(proc, Token_CmpEq, ssa_addr_load(proc, reason_addr), v_one32);
- ssaBlock *then = ssa_add_block(proc, NULL, "if.then");
- ssaBlock *done = ssa_add_block(proc, NULL, "if.done"); // NOTE(bill): Append later
- ssa_emit_if(proc, cond, then, done);
- proc->curr_block = then;
- ssa_emit_global_call(proc, "main", NULL, 0);
- ssa_emit_jump(proc, done);
- proc->curr_block = done;
-
- ssa_emit_return(proc, v_one32);
-
-
- ssa_end_procedure_body(proc);
- }
-#endif
-#if defined(GB_SYSTEM_WINDOWS)
- if (!m->build_context->is_dll && !has_win_main) {
- // WinMain :: proc(inst, prev: rawptr, cmd_line: ^byte, cmd_show: i32) -> i32
- String name = str_lit("WinMain");
- Type *proc_params = make_type_tuple(a);
- Type *proc_results = make_type_tuple(a);
-
- Scope *proc_scope = gb_alloc_item(a, Scope);
-
- proc_params->Tuple.variables = gb_alloc_array(a, Entity *, 4);
- proc_params->Tuple.variable_count = 4;
-
- proc_results->Tuple.variables = gb_alloc_array(a, Entity *, 1);
- proc_results->Tuple.variable_count = 1;
-
- proc_params->Tuple.variables[0] = make_entity_param(a, proc_scope, blank_token, t_rawptr, false);
- proc_params->Tuple.variables[1] = make_entity_param(a, proc_scope, blank_token, t_rawptr, false);
- proc_params->Tuple.variables[2] = make_entity_param(a, proc_scope, blank_token, t_u8_ptr, false);
- proc_params->Tuple.variables[3] = make_entity_param(a, proc_scope, blank_token, t_i32, false);
-
- proc_results->Tuple.variables[0] = make_entity_param(a, proc_scope, empty_token, t_i32, false);
-
-
- Type *proc_type = make_type_proc(a, proc_scope,
- proc_params, 4,
- proc_results, 1, false, ProcCC_Std);
-
- AstNode *body = gb_alloc_item(a, AstNode);
- Entity *e = make_entity_procedure(a, NULL, make_token_ident(name), proc_type, 0);
- ssaValue *p = ssa_make_value_procedure(a, m, e, proc_type, NULL, body, name);
-
- m->entry_point_entity = e;
-
- map_ssa_value_set(&m->values, hash_pointer(e), p);
- map_ssa_value_set(&m->members, hash_string(name), p);
-
- ssaProcedure *proc = &p->Proc;
- proc->tags = ProcTag_no_inline; // TODO(bill): is no_inline a good idea?
- e->Procedure.link_name = name;
-
- ssa_begin_procedure_body(proc);
- ssa_emit_global_call(proc, "main", NULL, 0);
- ssa_emit_return(proc, v_one32);
- ssa_end_procedure_body(proc);
- }
-#endif
- { // Startup Runtime
- // Cleanup(bill): probably better way of doing code insertion
- String name = str_lit(SSA_STARTUP_RUNTIME_PROC_NAME);
- Type *proc_type = make_type_proc(a, gb_alloc_item(a, Scope),
- NULL, 0,
- NULL, 0, false, ProcCC_Odin);
- AstNode *body = gb_alloc_item(a, AstNode);
- Entity *e = make_entity_procedure(a, NULL, make_token_ident(name), proc_type, 0);
- ssaValue *p = ssa_make_value_procedure(a, m, e, proc_type, NULL, body, name);
-
- map_ssa_value_set(&m->values, hash_pointer(e), p);
- map_ssa_value_set(&m->members, hash_string(name), p);
-
- ssaProcedure *proc = &p->Proc;
- proc->tags = ProcTag_no_inline; // TODO(bill): is no_inline a good idea?
-
- ssa_begin_procedure_body(proc);
-
- // TODO(bill): Should do a dependency graph do check which order to initialize them in?
- for_array(i, global_variables) {
- ssaGlobalVariable *var = &global_variables.e[i];
- if (var->decl->init_expr != NULL) {
- var->init = ssa_build_expr(proc, var->decl->init_expr);
- }
- }
-
- // NOTE(bill): Initialize constants first
- for_array(i, global_variables) {
- ssaGlobalVariable *var = &global_variables.e[i];
- if (var->init != NULL) {
- if (var->init->kind == ssaValue_Constant) {
- ssa_emit_store(proc, var->var, var->init);
- }
- }
- }
-
- for_array(i, global_variables) {
- ssaGlobalVariable *var = &global_variables.e[i];
- if (var->init != NULL) {
- if (var->init->kind != ssaValue_Constant) {
- ssa_emit_store(proc, var->var, var->init);
- }
- }
- }
-
- { // NOTE(bill): Setup type_info data
- // TODO(bill): Try and make a lot of this constant aggregate literals in LLVM IR
- ssaValue *type_info_data = NULL;
- ssaValue *type_info_member_data = NULL;
-
- ssaValue **found = NULL;
- found = map_ssa_value_get(&proc->module->members, hash_string(str_lit(SSA_TYPE_INFO_DATA_NAME)));
- GB_ASSERT(found != NULL);
- type_info_data = *found;
-
- found = map_ssa_value_get(&proc->module->members, hash_string(str_lit(SSA_TYPE_INFO_DATA_MEMBER_NAME)));
- GB_ASSERT(found != NULL);
- type_info_member_data = *found;
-
- CheckerInfo *info = proc->module->info;
-
- // Useful types
- Type *t_i64_slice_ptr = make_type_pointer(a, make_type_slice(a, t_i64));
- Type *t_string_slice_ptr = make_type_pointer(a, make_type_slice(a, t_string));
-
- i32 type_info_member_index = 0;
-
- for_array(type_info_map_index, info->type_info_map.entries) {
- MapIsizeEntry *entry = &info->type_info_map.entries.e[type_info_map_index];
- Type *t = cast(Type *)cast(uintptr)entry->key.key;
- t = default_type(t);
- isize entry_index = entry->value;
-
- ssaValue *tag = NULL;
-
- switch (t->kind) {
- case Type_Named: {
- tag = ssa_add_local_generated(proc, t_type_info_named);
-
- // TODO(bill): Which is better? The mangled name or actual name?
- ssaValue *name = ssa_make_const_string(a, t->Named.type_name->token.string);
- ssaValue *gtip = ssa_get_type_info_ptr(proc, type_info_data, t->Named.base);
-
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 0), name);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 1), gtip);
- } break;
-
- case Type_Basic:
- switch (t->Basic.kind) {
- case Basic_bool:
- tag = ssa_add_local_generated(proc, t_type_info_boolean);
- break;
- case Basic_i8:
- case Basic_u8:
- case Basic_i16:
- case Basic_u16:
- case Basic_i32:
- case Basic_u32:
- case Basic_i64:
- case Basic_u64:
- // case Basic_i128:
- // case Basic_u128:
- case Basic_int:
- case Basic_uint: {
- tag = ssa_add_local_generated(proc, t_type_info_integer);
- bool is_unsigned = (t->Basic.flags & BasicFlag_Unsigned) != 0;
- ssaValue *bits = ssa_make_const_int(a, type_size_of(m->sizes, a, t));
- ssaValue *is_signed = ssa_make_const_bool(a, !is_unsigned);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 0), bits);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 1), is_signed);
- } break;
-
- // case Basic_f16:
- case Basic_f32:
- case Basic_f64:
- // case Basic_f128:
- {
- tag = ssa_add_local_generated(proc, t_type_info_float);
- ssaValue *bits = ssa_make_const_int(a, type_size_of(m->sizes, a, t));
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 0), bits);
- } break;
-
- case Basic_rawptr:
- tag = ssa_add_local_generated(proc, t_type_info_pointer);
- break;
-
- case Basic_string:
- tag = ssa_add_local_generated(proc, t_type_info_string);
- break;
-
- case Basic_any:
- tag = ssa_add_local_generated(proc, t_type_info_any);
- break;
- }
- break;
-
- case Type_Pointer: {
- tag = ssa_add_local_generated(proc, t_type_info_pointer);
- ssaValue *gep = ssa_get_type_info_ptr(proc, type_info_data, t->Pointer.elem);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 0), gep);
- } break;
- case Type_Maybe: {
- tag = ssa_add_local_generated(proc, t_type_info_maybe);
- ssaValue *gep = ssa_get_type_info_ptr(proc, type_info_data, t->Maybe.elem);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 0), gep);
- } break;
- case Type_Array: {
- tag = ssa_add_local_generated(proc, t_type_info_array);
- ssaValue *gep = ssa_get_type_info_ptr(proc, type_info_data, t->Array.elem);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 0), gep);
-
- isize ez = type_size_of(m->sizes, a, t->Array.elem);
- ssaValue *elem_size = ssa_emit_struct_ep(proc, tag, 1);
- ssa_emit_store(proc, elem_size, ssa_make_const_int(a, ez));
-
- ssaValue *count = ssa_emit_struct_ep(proc, tag, 2);
- ssa_emit_store(proc, count, ssa_make_const_int(a, t->Array.count));
-
- } break;
- case Type_Slice: {
- tag = ssa_add_local_generated(proc, t_type_info_slice);
- ssaValue *gep = ssa_get_type_info_ptr(proc, type_info_data, t->Slice.elem);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 0), gep);
-
- isize ez = type_size_of(m->sizes, a, t->Slice.elem);
- ssaValue *elem_size = ssa_emit_struct_ep(proc, tag, 1);
- ssa_emit_store(proc, elem_size, ssa_make_const_int(a, ez));
-
- } break;
- case Type_Vector: {
- tag = ssa_add_local_generated(proc, t_type_info_vector);
- ssaValue *gep = ssa_get_type_info_ptr(proc, type_info_data, t->Vector.elem);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 0), gep);
-
- isize ez = type_size_of(m->sizes, a, t->Vector.elem);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 1), ssa_make_const_int(a, ez));
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 2), ssa_make_const_int(a, t->Vector.count));
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 3), ssa_make_const_int(a, type_align_of(m->sizes, a, t)));
-
- } break;
- case Type_Record: {
- switch (t->Record.kind) {
- case TypeRecord_Struct: {
- tag = ssa_add_local_generated(proc, t_type_info_struct);
-
- {
- ssaValue *packed = ssa_make_const_bool(a, t->Record.struct_is_packed);
- ssaValue *ordered = ssa_make_const_bool(a, t->Record.struct_is_ordered);
- ssaValue *size = ssa_make_const_int(a, type_size_of(m->sizes, a, t));
- ssaValue *align = ssa_make_const_int(a, type_align_of(m->sizes, a, t));
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 1), size);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 2), align);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 3), packed);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 4), ordered);
- }
-
- ssaValue *memory = ssa_type_info_member_offset(proc, type_info_member_data, t->Record.field_count, &type_info_member_index);
-
- type_set_offsets(m->sizes, a, t); // NOTE(bill): Just incase the offsets have not been set yet
- for (isize source_index = 0; source_index < t->Record.field_count; source_index++) {
- // TODO(bill): Order fields in source order not layout order
- Entity *f = t->Record.fields_in_src_order[source_index];
- ssaValue *tip = ssa_get_type_info_ptr(proc, type_info_data, f->type);
- i64 foffset = t->Record.struct_offsets[f->Variable.field_index];
- GB_ASSERT(f->kind == Entity_Variable && f->flags & EntityFlag_Field);
-
- ssaValue *field = ssa_emit_ptr_offset(proc, memory, ssa_make_const_int(a, source_index));
- ssaValue *name = ssa_emit_struct_ep(proc, field, 0);
- ssaValue *type_info = ssa_emit_struct_ep(proc, field, 1);
- ssaValue *offset = ssa_emit_struct_ep(proc, field, 2);
-
- if (f->token.string.len > 0) {
- ssa_emit_store(proc, name, ssa_make_const_string(a, f->token.string));
- }
- ssa_emit_store(proc, type_info, tip);
- ssa_emit_store(proc, offset, ssa_make_const_int(a, foffset));
- }
-
- Type *slice_type = make_type_slice(a, t_type_info_member);
- Type *slice_type_ptr = make_type_pointer(a, slice_type);
- ssaValue *slice = ssa_emit_struct_ep(proc, tag, 0);
- ssaValue *field_count = ssa_make_const_int(a, t->Record.field_count);
-
- ssaValue *elem = ssa_emit_struct_ep(proc, slice, 0);
- ssaValue *len = ssa_emit_struct_ep(proc, slice, 1);
- ssaValue *cap = ssa_emit_struct_ep(proc, slice, 2);
-
- ssa_emit_store(proc, elem, memory);
- ssa_emit_store(proc, len, field_count);
- ssa_emit_store(proc, cap, field_count);
- } break;
- case TypeRecord_Union:
- tag = ssa_add_local_generated(proc, t_type_info_union);
- {
- ssaValue *size = ssa_make_const_int(a, type_size_of(m->sizes, a, t));
- ssaValue *align = ssa_make_const_int(a, type_align_of(m->sizes, a, t));
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 1), size);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 2), align);
- }
- break;
- case TypeRecord_RawUnion: {
- tag = ssa_add_local_generated(proc, t_type_info_raw_union);
- {
- ssaValue *size = ssa_make_const_int(a, type_size_of(m->sizes, a, t));
- ssaValue *align = ssa_make_const_int(a, type_align_of(m->sizes, a, t));
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 1), size);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 2), align);
- }
-
- ssaValue *memory = ssa_type_info_member_offset(proc, type_info_member_data, t->Record.field_count, &type_info_member_index);
-
- for (isize i = 0; i < t->Record.field_count; i++) {
- ssaValue *field = ssa_emit_ptr_offset(proc, memory, ssa_make_const_int(a, i));
- ssaValue *name = ssa_emit_struct_ep(proc, field, 0);
- ssaValue *type_info = ssa_emit_struct_ep(proc, field, 1);
- ssaValue *offset = ssa_emit_struct_ep(proc, field, 2);
-
- Entity *f = t->Record.fields[i];
- ssaValue *tip = ssa_get_type_info_ptr(proc, type_info_data, f->type);
-
- if (f->token.string.len > 0) {
- ssa_emit_store(proc, name, ssa_make_const_string(a, f->token.string));
- }
- ssa_emit_store(proc, type_info, tip);
- ssa_emit_store(proc, offset, ssa_make_const_int(a, 0));
- }
-
- Type *slice_type = make_type_slice(a, t_type_info_member);
- Type *slice_type_ptr = make_type_pointer(a, slice_type);
- ssaValue *slice = ssa_emit_struct_ep(proc, tag, 0);
- ssaValue *field_count = ssa_make_const_int(a, t->Record.field_count);
-
- ssaValue *elem = ssa_emit_struct_ep(proc, slice, 0);
- ssaValue *len = ssa_emit_struct_ep(proc, slice, 1);
- ssaValue *cap = ssa_emit_struct_ep(proc, slice, 2);
-
- ssa_emit_store(proc, elem, memory);
- ssa_emit_store(proc, len, field_count);
- ssa_emit_store(proc, cap, field_count);
- } break;
- case TypeRecord_Enum:
- tag = ssa_add_local_generated(proc, t_type_info_enum);
- {
- GB_ASSERT(t->Record.enum_base_type != NULL);
- ssaValue *base = ssa_type_info(proc, t->Record.enum_base_type);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 0), base);
-
- if (t->Record.field_count > 0) {
- Entity **fields = t->Record.fields;
- isize count = t->Record.field_count;
- ssaValue *name_array = NULL;
-
- {
- Token token = {Token_Ident};
- i32 id = cast(i32)entry_index;
- char name_base[] = "__$enum_names";
- isize name_len = gb_size_of(name_base) + 10;
- token.string.text = gb_alloc_array(a, u8, name_len);
- token.string.len = gb_snprintf(cast(char *)token.string.text, name_len,
- "%s-%d", name_base, id)-1;
- Entity *e = make_entity_variable(a, NULL, token, make_type_array(a, t_string, count));
- name_array = ssa_make_value_global(a, e, NULL);
- name_array->Global.is_private = true;
- ssa_module_add_value(m, e, name_array);
- map_ssa_value_set(&m->members, hash_string(token.string), name_array);
- }
-
- for (isize i = 0; i < count; i++) {
- ssaValue *name_ep = ssa_emit_array_epi(proc, name_array, i);
- ssa_emit_store(proc, name_ep, ssa_make_const_string(a, fields[i]->token.string));
- }
-
- ssaValue *v_count = ssa_make_const_int(a, count);
-
- ssaValue *names = ssa_emit_struct_ep(proc, tag, 1);
- ssaValue *name_array_elem = ssa_array_elem(proc, name_array);
-
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, names, 0), name_array_elem);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, names, 1), v_count);
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, names, 2), v_count);
- }
- }
- break;
- }
- } break;
-
- case Type_Tuple: {
- tag = ssa_add_local_generated(proc, t_type_info_tuple);
-
- {
- ssaValue *align = ssa_make_const_int(a, type_align_of(m->sizes, a, t));
- ssa_emit_store(proc, ssa_emit_struct_ep(proc, tag, 2), align);
- }
-
- ssaValue *memory = ssa_type_info_member_offset(proc, type_info_member_data, t->Tuple.variable_count, &type_info_member_index);
-
- for (isize i = 0; i < t->Tuple.variable_count; i++) {
- ssaValue *field = ssa_emit_ptr_offset(proc, memory, ssa_make_const_int(a, i));
- ssaValue *name = ssa_emit_struct_ep(proc, field, 0);
- ssaValue *type_info = ssa_emit_struct_ep(proc, field, 1);
- // NOTE(bill): offset is not used for tuples
-
- Entity *f = t->Tuple.variables[i];
- ssaValue *tip = ssa_get_type_info_ptr(proc, type_info_data, f->type);
-
- if (f->token.string.len > 0) {
- ssa_emit_store(proc, name, ssa_make_const_string(a, f->token.string));
- }
- ssa_emit_store(proc, type_info, tip);
- }
-
- Type *slice_type = make_type_slice(a, t_type_info_member);
- Type *slice_type_ptr = make_type_pointer(a, slice_type);
- ssaValue *slice = ssa_emit_struct_ep(proc, tag, 0);
- ssaValue *variable_count = ssa_make_const_int(a, t->Tuple.variable_count);
-
- ssaValue *elem = ssa_emit_struct_ep(proc, slice, 0);
- ssaValue *len = ssa_emit_struct_ep(proc, slice, 1);
- ssaValue *cap = ssa_emit_struct_ep(proc, slice, 2);
-
- ssa_emit_store(proc, elem, memory);
- ssa_emit_store(proc, len, variable_count);
- ssa_emit_store(proc, cap, variable_count);
- } break;
-
- case Type_Proc: {
- tag = ssa_add_local_generated(proc, t_type_info_procedure);
-
- ssaValue *params = ssa_emit_struct_ep(proc, tag, 0);
- ssaValue *results = ssa_emit_struct_ep(proc, tag, 1);
- ssaValue *variadic = ssa_emit_struct_ep(proc, tag, 2);
-
- if (t->Proc.params) {
- ssa_emit_store(proc, params, ssa_get_type_info_ptr(proc, type_info_data, t->Proc.params));
- }
- if (t->Proc.results) {
- ssa_emit_store(proc, results, ssa_get_type_info_ptr(proc, type_info_data, t->Proc.results));
- }
- ssa_emit_store(proc, variadic, ssa_make_const_bool(a, t->Proc.variadic));
-
- // TODO(bill): Type_Info for procedures
- } break;
- }
-
- if (tag != NULL) {
- ssaValue *gep = ssa_emit_array_epi(proc, type_info_data, entry_index);
- ssaValue *val = ssa_emit_conv(proc, ssa_emit_load(proc, tag), t_type_info);
- ssa_emit_store(proc, gep, val);
- }
- }
- }
-
- ssa_end_procedure_body(proc);
- }
-
- for_array(i, m->procs_to_generate) {
- ssa_build_proc(m->procs_to_generate.e[i], m->procs_to_generate.e[i]->Proc.parent);
- }
-
-
- // m->layout = str_lit("e-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:64:64-f32:32:32-f64:64:64-v64:64:64-v128:128:128-a0:0:64-s0:64:64-f80:128:128-n8:16:32:64");
-}
-
diff --git a/src/ssa_opt.c b/src/ssa_opt.c
deleted file mode 100644
index 7db5b1b89..000000000
--- a/src/ssa_opt.c
+++ /dev/null
@@ -1,494 +0,0 @@
-// Optimizations for the SSA code
-
-void ssa_opt_add_operands(ssaValueArray *ops, ssaInstr *i) {
- switch (i->kind) {
- case ssaInstr_Comment:
- break;
- case ssaInstr_Local:
- break;
- case ssaInstr_ZeroInit:
- array_add(ops, i->ZeroInit.address);
- break;
- case ssaInstr_Store:
- array_add(ops, i->Store.address);
- array_add(ops, i->Store.value);
- break;
- case ssaInstr_Load:
- array_add(ops, i->Load.address);
- break;
- case ssaInstr_ArrayElementPtr:
- array_add(ops, i->ArrayElementPtr.address);
- array_add(ops, i->ArrayElementPtr.elem_index);
- break;
- case ssaInstr_StructElementPtr:
- array_add(ops, i->StructElementPtr.address);
- break;
- case ssaInstr_PtrOffset:
- array_add(ops, i->PtrOffset.address);
- array_add(ops, i->PtrOffset.offset);
- break;
- case ssaInstr_ArrayExtractValue:
- array_add(ops, i->ArrayExtractValue.address);
- break;
- case ssaInstr_StructExtractValue:
- array_add(ops, i->StructExtractValue.address);
- break;
- case ssaInstr_Conv:
- array_add(ops, i->Conv.value);
- break;
- case ssaInstr_Jump:
- break;
- case ssaInstr_If:
- array_add(ops, i->If.cond);
- break;
- case ssaInstr_Return:
- if (i->Return.value != NULL) {
- array_add(ops, i->Return.value);
- }
- break;
- case ssaInstr_Select:
- array_add(ops, i->Select.cond);
- break;
- case ssaInstr_Phi:
- for_array(j, i->Phi.edges) {
- array_add(ops, i->Phi.edges.e[j]);
- }
- break;
- case ssaInstr_Unreachable:
- break;
- case ssaInstr_UnaryOp:
- array_add(ops, i->UnaryOp.expr);
- break;
- case ssaInstr_BinaryOp:
- array_add(ops, i->BinaryOp.left);
- array_add(ops, i->BinaryOp.right);
- break;
- case ssaInstr_Call:
- array_add(ops, i->Call.value);
- for (isize j = 0; j < i->Call.arg_count; j++) {
- array_add(ops, i->Call.args[j]);
- }
- break;
- case ssaInstr_VectorExtractElement:
- array_add(ops, i->VectorExtractElement.vector);
- array_add(ops, i->VectorExtractElement.index);
- break;
- case ssaInstr_VectorInsertElement:
- array_add(ops, i->VectorInsertElement.vector);
- array_add(ops, i->VectorInsertElement.elem);
- array_add(ops, i->VectorInsertElement.index);
- break;
- case ssaInstr_VectorShuffle:
- array_add(ops, i->VectorShuffle.vector);
- break;
- case ssaInstr_StartupRuntime:
- break;
- case ssaInstr_BoundsCheck:
- array_add(ops, i->BoundsCheck.index);
- array_add(ops, i->BoundsCheck.len);
- break;
- case ssaInstr_SliceBoundsCheck:
- array_add(ops, i->SliceBoundsCheck.low);
- array_add(ops, i->SliceBoundsCheck.high);
- break;
- }
-}
-
-
-
-
-
-void ssa_opt_block_replace_pred(ssaBlock *b, ssaBlock *from, ssaBlock *to) {
- for_array(i, b->preds) {
- ssaBlock *pred = b->preds.e[i];
- if (pred == from) {
- b->preds.e[i] = to;
- }
- }
-}
-
-void ssa_opt_block_replace_succ(ssaBlock *b, ssaBlock *from, ssaBlock *to) {
- for_array(i, b->succs) {
- ssaBlock *succ = b->succs.e[i];
- if (succ == from) {
- b->succs.e[i] = to;
- }
- }
-}
-
-bool ssa_opt_block_has_phi(ssaBlock *b) {
- return b->instrs.e[0]->Instr.kind == ssaInstr_Phi;
-}
-
-
-
-
-
-
-
-
-
-
-ssaValueArray ssa_get_block_phi_nodes(ssaBlock *b) {
- ssaValueArray phis = {0};
- for_array(i, b->instrs) {
- ssaInstr *instr = &b->instrs.e[i]->Instr;
- if (instr->kind != ssaInstr_Phi) {
- phis = b->instrs;
- phis.count = i;
- return phis;
- }
- }
- return phis;
-}
-
-void ssa_remove_pred(ssaBlock *b, ssaBlock *p) {
- ssaValueArray phis = ssa_get_block_phi_nodes(b);
- isize i = 0;
- for_array(j, b->preds) {
- ssaBlock *pred = b->preds.e[j];
- if (pred != p) {
- b->preds.e[i] = b->preds.e[j];
- for_array(k, phis) {
- ssaInstrPhi *phi = &phis.e[k]->Instr.Phi;
- phi->edges.e[i] = phi->edges.e[j];
- }
- i++;
- }
- }
- b->preds.count = i;
- for_array(k, phis) {
- ssaInstrPhi *phi = &phis.e[k]->Instr.Phi;
- phi->edges.count = i;
- }
-
-}
-
-void ssa_remove_dead_blocks(ssaProcedure *proc) {
- isize j = 0;
- for_array(i, proc->blocks) {
- ssaBlock *b = proc->blocks.e[i];
- if (b == NULL) {
- continue;
- }
- // NOTE(bill): Swap order
- b->index = j;
- proc->blocks.e[j++] = b;
- }
- proc->blocks.count = j;
-}
-
-void ssa_mark_reachable(ssaBlock *b) {
- isize const WHITE = 0;
- isize const BLACK = -1;
- b->index = BLACK;
- for_array(i, b->succs) {
- ssaBlock *succ = b->succs.e[i];
- if (succ->index == WHITE) {
- ssa_mark_reachable(succ);
- }
- }
-}
-
-void ssa_remove_unreachable_blocks(ssaProcedure *proc) {
- isize const WHITE = 0;
- isize const BLACK = -1;
- for_array(i, proc->blocks) {
- proc->blocks.e[i]->index = WHITE;
- }
-
- ssa_mark_reachable(proc->blocks.e[0]);
-
- for_array(i, proc->blocks) {
- ssaBlock *b = proc->blocks.e[i];
- if (b->index == WHITE) {
- for_array(j, b->succs) {
- ssaBlock *c = b->succs.e[j];
- if (c->index == BLACK) {
- ssa_remove_pred(c, b);
- }
- }
- // NOTE(bill): Mark as empty but don't actually free it
- // As it's been allocated with an arena
- proc->blocks.e[i] = NULL;
- }
- }
- ssa_remove_dead_blocks(proc);
-}
-
-bool ssa_opt_block_fusion(ssaProcedure *proc, ssaBlock *a) {
- if (a->succs.count != 1) {
- return false;
- }
- ssaBlock *b = a->succs.e[0];
- if (b->preds.count != 1) {
- return false;
- }
-
- if (ssa_opt_block_has_phi(b)) {
- return false;
- }
-
- array_pop(&a->instrs); // Remove branch at end
- for_array(i, b->instrs) {
- array_add(&a->instrs, b->instrs.e[i]);
- ssa_set_instr_parent(b->instrs.e[i], a);
- }
-
- array_clear(&a->succs);
- for_array(i, b->succs) {
- array_add(&a->succs, b->succs.e[i]);
- }
-
- // Fix preds links
- for_array(i, b->succs) {
- ssa_opt_block_replace_pred(b->succs.e[i], b, a);
- }
-
- proc->blocks.e[b->index] = NULL;
- return true;
-}
-
-void ssa_opt_blocks(ssaProcedure *proc) {
- ssa_remove_unreachable_blocks(proc);
-
-#if 1
- bool changed = true;
- while (changed) {
- changed = false;
- for_array(i, proc->blocks) {
- ssaBlock *b = proc->blocks.e[i];
- if (b == NULL) {
- continue;
- }
- GB_ASSERT(b->index == i);
-
- if (ssa_opt_block_fusion(proc, b)) {
- changed = true;
- }
- // TODO(bill): other simple block optimizations
- }
- }
-#endif
-
- ssa_remove_dead_blocks(proc);
-}
-void ssa_opt_build_referrers(ssaProcedure *proc) {
- gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&proc->module->tmp_arena);
-
- ssaValueArray ops = {0}; // NOTE(bill): Act as a buffer
- array_init_reserve(&ops, proc->module->tmp_allocator, 64); // HACK(bill): This _could_ overflow the temp arena
- for_array(i, proc->blocks) {
- ssaBlock *b = proc->blocks.e[i];
- for_array(j, b->instrs) {
- ssaValue *instr = b->instrs.e[j];
- array_clear(&ops);
- ssa_opt_add_operands(&ops, &instr->Instr);
- for_array(k, ops) {
- ssaValue *op = ops.e[k];
- if (op == NULL) {
- continue;
- }
- ssaValueArray *refs = ssa_value_referrers(op);
- if (refs != NULL) {
- array_add(refs, instr);
- }
- }
- }
- }
-
- gb_temp_arena_memory_end(tmp);
-}
-
-
-
-
-
-
-
-// State of Lengauer-Tarjan algorithm
-// Based on this paper: http://jgaa.info/accepted/2006/GeorgiadisTarjanWerneck2006.10.1.pdf
-typedef struct ssaLTState {
- isize count;
- // NOTE(bill): These are arrays
- ssaBlock **sdom; // Semidominator
- ssaBlock **parent; // Parent in DFS traversal of CFG
- ssaBlock **ancestor;
-} ssaLTState;
-
-// §2.2 - bottom of page
-void ssa_lt_link(ssaLTState *lt, ssaBlock *p, ssaBlock *q) {
- lt->ancestor[q->index] = p;
-}
-
-i32 ssa_lt_depth_first_search(ssaLTState *lt, ssaBlock *p, i32 i, ssaBlock **preorder) {
- preorder[i] = p;
- p->dom.pre = i++;
- lt->sdom[p->index] = p;
- ssa_lt_link(lt, NULL, p);
- for_array(index, p->succs) {
- ssaBlock *q = p->succs.e[index];
- if (lt->sdom[q->index] == NULL) {
- lt->parent[q->index] = p;
- i = ssa_lt_depth_first_search(lt, q, i, preorder);
- }
- }
- return i;
-}
-
-ssaBlock *ssa_lt_eval(ssaLTState *lt, ssaBlock *v) {
- ssaBlock *u = v;
- for (;
- lt->ancestor[v->index] != NULL;
- v = lt->ancestor[v->index]) {
- if (lt->sdom[v->index]->dom.pre < lt->sdom[u->index]->dom.pre) {
- u = v;
- }
- }
- return u;
-}
-
-typedef struct ssaDomPrePost {
- i32 pre, post;
-} ssaDomPrePost;
-
-ssaDomPrePost ssa_opt_number_dom_tree(ssaBlock *v, i32 pre, i32 post) {
- ssaDomPrePost result = {pre, post};
-
- v->dom.pre = pre++;
- for_array(i, v->dom.children) {
- result = ssa_opt_number_dom_tree(v->dom.children.e[i], result.pre, result.post);
- }
- v->dom.post = post++;
-
- result.pre = pre;
- result.post = post;
- return result;
-}
-
-
-// NOTE(bill): Requires `ssa_opt_blocks` to be called before this
-void ssa_opt_build_dom_tree(ssaProcedure *proc) {
- // Based on this paper: http://jgaa.info/accepted/2006/GeorgiadisTarjanWerneck2006.10.1.pdf
-
- gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&proc->module->tmp_arena);
-
- isize n = proc->blocks.count;
- ssaBlock **buf = gb_alloc_array(proc->module->tmp_allocator, ssaBlock *, 5*n);
-
- ssaLTState lt = {0};
- lt.count = n;
- lt.sdom = &buf[0*n];
- lt.parent = &buf[1*n];
- lt.ancestor = &buf[2*n];
-
- ssaBlock **preorder = &buf[3*n];
- ssaBlock **buckets = &buf[4*n];
- ssaBlock *root = proc->blocks.e[0];
-
- // Step 1 - number vertices
- i32 pre_num = ssa_lt_depth_first_search(&lt, root, 0, preorder);
- gb_memmove(buckets, preorder, n*gb_size_of(preorder[0]));
-
- for (i32 i = n-1; i > 0; i--) {
- ssaBlock *w = preorder[i];
-
- // Step 3 - Implicitly define idom for nodes
- for (ssaBlock *v = buckets[i]; v != w; v = buckets[v->dom.pre]) {
- ssaBlock *u = ssa_lt_eval(&lt, v);
- if (lt.sdom[u->index]->dom.pre < i) {
- v->dom.idom = u;
- } else {
- v->dom.idom = w;
- }
- }
-
- // Step 2 - Compute all sdoms
- lt.sdom[w->index] = lt.parent[w->index];
- for_array(pred_index, w->preds) {
- ssaBlock *v = w->preds.e[pred_index];
- ssaBlock *u = ssa_lt_eval(&lt, v);
- if (lt.sdom[u->index]->dom.pre < lt.sdom[w->index]->dom.pre) {
- lt.sdom[w->index] = lt.sdom[u->index];
- }
- }
-
- ssa_lt_link(&lt, lt.parent[w->index], w);
-
- if (lt.parent[w->index] == lt.sdom[w->index]) {
- w->dom.idom = lt.parent[w->index];
- } else {
- buckets[i] = buckets[lt.sdom[w->index]->dom.pre];
- buckets[lt.sdom[w->index]->dom.pre] = w;
- }
- }
-
- // The rest of Step 3
- for (ssaBlock *v = buckets[0]; v != root; v = buckets[v->dom.pre]) {
- v->dom.idom = root;
- }
-
- // Step 4 - Explicitly define idom for nodes (in preorder)
- for (isize i = 1; i < n; i++) {
- ssaBlock *w = preorder[i];
- if (w == root) {
- w->dom.idom = NULL;
- } else {
- // Weird tree relationships here!
-
- if (w->dom.idom != lt.sdom[w->index]) {
- w->dom.idom = w->dom.idom->dom.idom;
- }
-
- // Calculate children relation as inverse of idom
- if (w->dom.idom->dom.children.e == NULL) {
- // TODO(bill): Is this good enough for memory allocations?
- array_init(&w->dom.idom->dom.children, heap_allocator());
- }
- array_add(&w->dom.idom->dom.children, w);
- }
- }
-
- ssa_opt_number_dom_tree(root, 0, 0);
-
- gb_temp_arena_memory_end(tmp);
-}
-
-void ssa_opt_mem2reg(ssaProcedure *proc) {
- // TODO(bill): ssa_opt_mem2reg
-}
-
-
-
-void ssa_opt_tree(ssaGen *s) {
- s->opt_called = true;
-
- for_array(member_index, s->module.procs) {
- ssaProcedure *proc = s->module.procs.e[member_index];
- if (proc->blocks.count == 0) { // Prototype/external procedure
- continue;
- }
-
- ssa_opt_blocks(proc);
- #if 1
- ssa_opt_build_referrers(proc);
- ssa_opt_build_dom_tree(proc);
-
- // TODO(bill): ssa optimization
- // [ ] cse (common-subexpression) elim
- // [ ] copy elim
- // [ ] dead code elim
- // [ ] dead store/load elim
- // [ ] phi elim
- // [ ] short circuit elim
- // [ ] bounds check elim
- // [ ] lift/mem2reg
- // [ ] lift/mem2reg
-
- ssa_opt_mem2reg(proc);
- #endif
-
- GB_ASSERT(proc->blocks.count > 0);
- ssa_number_proc_registers(proc);
- }
-}
diff --git a/src/ssa_print.c b/src/ssa_print.c
deleted file mode 100644
index 41f8551a7..000000000
--- a/src/ssa_print.c
+++ /dev/null
@@ -1,1515 +0,0 @@
-typedef struct ssaFileBuffer {
- gbVirtualMemory vm;
- isize offset;
- gbFile * output;
-} ssaFileBuffer;
-
-void ssa_file_buffer_init(ssaFileBuffer *f, gbFile *output) {
- isize size = 8*gb_virtual_memory_page_size(NULL);
- f->vm = gb_vm_alloc(NULL, size);
- f->offset = 0;
- f->output = output;
-}
-
-void ssa_file_buffer_destroy(ssaFileBuffer *f) {
- if (f->offset > 0) {
- // NOTE(bill): finish writing buffered data
- gb_file_write(f->output, f->vm.data, f->offset);
- }
-
- gb_vm_free(f->vm);
-}
-
-void ssa_file_buffer_write(ssaFileBuffer *f, void *data, isize len) {
- if (len > f->vm.size) {
- gb_file_write(f->output, data, len);
- return;
- }
-
- if ((f->vm.size - f->offset) < len) {
- gb_file_write(f->output, f->vm.data, f->offset);
- f->offset = 0;
- }
- u8 *cursor = cast(u8 *)f->vm.data + f->offset;
- gb_memmove(cursor, data, len);
- f->offset += len;
-}
-
-
-void ssa_fprintf(ssaFileBuffer *f, char *fmt, ...) {
- va_list va;
- va_start(va, fmt);
- char buf[4096] = {0};
- isize len = gb_snprintf_va(buf, gb_size_of(buf), fmt, va);
- ssa_file_buffer_write(f, buf, len-1);
- va_end(va);
-}
-
-
-void ssa_file_write(ssaFileBuffer *f, void *data, isize len) {
- ssa_file_buffer_write(f, data, len);
-}
-
-
-bool ssa_valid_char(u8 c) {
- if (c >= 0x80) {
- return false;
- }
-
- if (gb_char_is_alphanumeric(c)) {
- return true;
- }
-
- switch (c) {
- case '$':
- case '-':
- case '.':
- case '_':
- return true;
- }
-
- return false;
-}
-
-void ssa_print_escape_string(ssaFileBuffer *f, String name, bool print_quotes) {
- isize extra = 0;
- for (isize i = 0; i < name.len; i++) {
- u8 c = name.text[i];
- if (!ssa_valid_char(c)) {
- extra += 2;
- }
- }
-
- if (extra == 0) {
- ssa_fprintf(f, "%.*s", LIT(name));
- return;
- }
-
-
- char hex_table[] = "0123456789ABCDEF";
- isize buf_len = name.len + extra + 2;
-
- gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&string_buffer_arena);
-
- u8 *buf = gb_alloc_array(string_buffer_allocator, u8, buf_len);
-
- isize j = 0;
-
- if (print_quotes) {
- buf[j++] = '"';
- }
-
- for (isize i = 0; i < name.len; i++) {
- u8 c = name.text[i];
- if (ssa_valid_char(c)) {
- buf[j++] = c;
- } else {
- buf[j] = '\\';
- buf[j+1] = hex_table[c >> 4];
- buf[j+2] = hex_table[c & 0x0f];
- j += 3;
- }
- }
-
- if (print_quotes) {
- buf[j++] = '"';
- }
-
- ssa_file_write(f, buf, j);
-
- gb_temp_arena_memory_end(tmp);
-}
-
-
-
-void ssa_print_encoded_local(ssaFileBuffer *f, String name) {
- ssa_fprintf(f, "%%");
- ssa_print_escape_string(f, name, true);
-}
-
-void ssa_print_encoded_global(ssaFileBuffer *f, String name, bool remove_prefix) {
- ssa_fprintf(f, "@");
- if (!remove_prefix) {
- ssa_fprintf(f, ".");
- }
- ssa_print_escape_string(f, name, true);
-}
-
-
-void ssa_print_type(ssaFileBuffer *f, ssaModule *m, Type *t) {
- BaseTypeSizes s = m->sizes;
- i64 word_bits = 8*s.word_size;
- GB_ASSERT_NOT_NULL(t);
- t = default_type(t);
-
- switch (t->kind) {
- case Type_Basic:
- switch (t->Basic.kind) {
- case Basic_bool: ssa_fprintf(f, "i1"); break;
- case Basic_i8: ssa_fprintf(f, "i8"); break;
- case Basic_u8: ssa_fprintf(f, "i8"); break;
- case Basic_i16: ssa_fprintf(f, "i16"); break;
- case Basic_u16: ssa_fprintf(f, "i16"); break;
- case Basic_i32: ssa_fprintf(f, "i32"); break;
- case Basic_u32: ssa_fprintf(f, "i32"); break;
- case Basic_i64: ssa_fprintf(f, "i64"); break;
- case Basic_u64: ssa_fprintf(f, "i64"); break;
- // case Basic_i128: ssa_fprintf(f, "i128"); break;
- // case Basic_u128: ssa_fprintf(f, "i128"); break;
- // case Basic_f16: ssa_fprintf(f, "half"); break;
- case Basic_f32: ssa_fprintf(f, "float"); break;
- case Basic_f64: ssa_fprintf(f, "double"); break;
- // case Basic_f128: ssa_fprintf(f, "fp128"); break;
- case Basic_rawptr: ssa_fprintf(f, "%%..rawptr"); break;
- case Basic_string: ssa_fprintf(f, "%%..string"); break;
- case Basic_uint: ssa_fprintf(f, "i%lld", word_bits); break;
- case Basic_int: ssa_fprintf(f, "i%lld", word_bits); break;
- case Basic_any: ssa_fprintf(f, "%%..any"); break;
- }
- break;
- case Type_Pointer:
- ssa_print_type(f, m, t->Pointer.elem);
- ssa_fprintf(f, "*");
- break;
- case Type_Maybe:
- ssa_fprintf(f, "{");
- ssa_print_type(f, m, t->Maybe.elem);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, t_bool);
- ssa_fprintf(f, "}");
- break;
- case Type_Array:
- ssa_fprintf(f, "[%lld x ", t->Array.count);
- ssa_print_type(f, m, t->Array.elem);
- ssa_fprintf(f, "]");
- break;
- case Type_Vector:
- ssa_fprintf(f, "<%lld x ", t->Vector.count);
- ssa_print_type(f, m, t->Vector.elem);
- ssa_fprintf(f, ">");
- break;
- case Type_Slice:
- ssa_fprintf(f, "{");
- ssa_print_type(f, m, t->Slice.elem);
- ssa_fprintf(f, "*, i%lld, i%lld}", word_bits, word_bits);
- break;
- case Type_Record: {
- switch (t->Record.kind) {
- case TypeRecord_Struct:
- if (t->Record.struct_is_packed) {
- ssa_fprintf(f, "<");
- }
- ssa_fprintf(f, "{");
- for (isize i = 0; i < t->Record.field_count; i++) {
- if (i > 0) {
- ssa_fprintf(f, ", ");
- }
- ssa_print_type(f, m, t->Record.fields[i]->type);
- }
- ssa_fprintf(f, "}");
- if (t->Record.struct_is_packed) {
- ssa_fprintf(f, ">");
- }
- break;
- case TypeRecord_Union: {
- // NOTE(bill): The zero size array is used to fix the alignment used in a structure as
- // LLVM takes the first element's alignment as the entire alignment (like C)
- i64 size_of_union = type_size_of(s, heap_allocator(), t) - s.word_size;
- i64 align_of_union = type_align_of(s, heap_allocator(), t);
- ssa_fprintf(f, "{[0 x <%lld x i8>], [%lld x i8], i%lld}", align_of_union, size_of_union, word_bits);
- } break;
- case TypeRecord_RawUnion: {
- // NOTE(bill): The zero size array is used to fix the alignment used in a structure as
- // LLVM takes the first element's alignment as the entire alignment (like C)
- i64 size_of_union = type_size_of(s, heap_allocator(), t);
- i64 align_of_union = type_align_of(s, heap_allocator(), t);
- ssa_fprintf(f, "{[0 x <%lld x i8>], [%lld x i8]}", align_of_union, size_of_union);
- } break;
- case TypeRecord_Enum:
- ssa_print_type(f, m, base_enum_type(t));
- break;
- }
- } break;
-
-
- case Type_Named:
- if (is_type_struct(t) || is_type_union(t)) {
- String *name = map_string_get(&m->type_names, hash_pointer(t));
- GB_ASSERT_MSG(name != NULL, "%.*s", LIT(t->Named.name));
- ssa_print_encoded_local(f, *name);
- } else {
- ssa_print_type(f, m, base_type(t));
- }
- break;
- case Type_Tuple:
- if (t->Tuple.variable_count == 1) {
- ssa_print_type(f, m, t->Tuple.variables[0]->type);
- } else {
- ssa_fprintf(f, "{");
- for (isize i = 0; i < t->Tuple.variable_count; i++) {
- if (i > 0) {
- ssa_fprintf(f, ", ");
- }
- ssa_print_type(f, m, t->Tuple.variables[i]->type);
- }
- ssa_fprintf(f, "}");
- }
- break;
- case Type_Proc: {
- if (t->Proc.result_count == 0) {
- ssa_fprintf(f, "void");
- } else {
- ssa_print_type(f, m, t->Proc.results);
- }
- ssa_fprintf(f, " (");
- TypeTuple *params = &t->Proc.params->Tuple;
- for (isize i = 0; i < t->Proc.param_count; i++) {
- if (i > 0) {
- ssa_fprintf(f, ", ");
- }
- ssa_print_type(f, m, params->variables[i]->type);
- }
- ssa_fprintf(f, ")*");
- } break;
- }
-}
-
-void ssa_print_exact_value(ssaFileBuffer *f, ssaModule *m, ExactValue value, Type *type);
-
-void ssa_print_compound_element(ssaFileBuffer *f, ssaModule *m, ExactValue v, Type *elem_type) {
- ssa_print_type(f, m, elem_type);
- ssa_fprintf(f, " ");
-
- if (v.kind != ExactValue_Invalid && is_type_maybe(elem_type)) {
- Type *t = base_type(elem_type)->Maybe.elem;
- ssa_fprintf(f, "{");
- ssa_print_type(f, m, t);
- ssa_fprintf(f, " ");
- }
-
- if (v.kind == ExactValue_Invalid || base_type(elem_type) == t_any) {
- ssa_fprintf(f, "zeroinitializer");
- } else {
- ssa_print_exact_value(f, m, v, elem_type);
- }
-
- if (v.kind != ExactValue_Invalid && is_type_maybe(elem_type)) {
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, t_bool);
- ssa_fprintf(f, " ");
- ssa_fprintf(f, "true}");
- }
-}
-
-void ssa_print_exact_value(ssaFileBuffer *f, ssaModule *m, ExactValue value, Type *type) {
- type = base_type(base_enum_type(type));
- if (is_type_float(type)) {
- value = exact_value_to_float(value);
- } else if (is_type_integer(type)) {
- value = exact_value_to_integer(value);
- } else if (is_type_pointer(type)) {
- value = exact_value_to_integer(value);
- }
-
- switch (value.kind) {
- case ExactValue_Bool:
- ssa_fprintf(f, "%s", (value.value_bool ? "true" : "false"));
- break;
- case ExactValue_String: {
- String str = value.value_string;
- if (str.len == 0) {
- ssa_fprintf(f, "zeroinitializer");
- break;
- }
- if (!is_type_string(type)) {
- GB_ASSERT(is_type_array(type));
- ssa_fprintf(f, "c\"");
- ssa_print_escape_string(f, str, false);
- ssa_fprintf(f, "\"");
- } else {
- // HACK NOTE(bill): This is a hack but it works because strings are created at the very end
- // of the .ll file
- ssaValue *str_array = ssa_add_global_string_array(m, str);
-
- ssa_fprintf(f, "{i8* getelementptr inbounds (");
- ssa_print_type(f, m, str_array->Global.entity->type);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, str_array->Global.entity->type);
- ssa_fprintf(f, "* ");
- ssa_print_encoded_global(f, str_array->Global.entity->token.string, false);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " 0, i32 0), ");
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " %lld}", cast(i64)str.len);
- }
- } break;
- case ExactValue_Integer: {
- if (is_type_pointer(type)) {
- if (value.value_integer == 0) {
- ssa_fprintf(f, "null");
- } else {
- ssa_fprintf(f, "inttoptr (");
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " %llu to ", value.value_integer);
- ssa_print_type(f, m, t_rawptr);
- ssa_fprintf(f, ")");
- }
- } else {
- ssa_fprintf(f, "%lld", value.value_integer);
- }
- } break;
- case ExactValue_Float: {
- GB_ASSERT(is_type_float(type));
- type = base_type(type);
- u64 u = *cast(u64*)&value.value_float;
- switch (type->Basic.kind) {
- case Basic_f32:
- // IMPORTANT NOTE(bill): LLVM requires all floating point constants to be
- // a 64 bit number if bits_of(float type) <= 64.
- // https://groups.google.com/forum/#!topic/llvm-dev/IlqV3TbSk6M
- // 64 bit mantissa: 52 bits
- // 32 bit mantissa: 23 bits
- // 29 == 52-23
- u >>= 29;
- u <<= 29;
- break;
- }
-
- switch (type->Basic.kind) {
- case 0: break;
-#if 0
- case Basic_f16:
- ssa_fprintf(f, "bitcast (");
- ssa_print_type(f, m, t_u16);
- ssa_fprintf(f, " %u to ", cast(u16)f32_to_f16(cast(f32)value.value_float));
- ssa_print_type(f, m, t_f16);
- ssa_fprintf(f, ")");
- break;
- case Basic_f128:
- ssa_fprintf(f, "bitcast (");
- ssa_fprintf(f, "i128");
- // TODO(bill): Actually support f128
- ssa_fprintf(f, " %llu to ", u);
- ssa_print_type(f, m, t_f128);
- ssa_fprintf(f, ")");
- break;
-#endif
- default:
- ssa_fprintf(f, "0x%016llx", u);
- break;
- }
- } break;
- case ExactValue_Pointer:
- if (value.value_pointer == 0) {
- ssa_fprintf(f, "null");
- } else {
- ssa_fprintf(f, "inttoptr (");
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " %llu to ", cast(u64)cast(uintptr)value.value_pointer);
- ssa_print_type(f, m, t_rawptr);
- ssa_fprintf(f, ")");
- }
- break;
-
- case ExactValue_Compound: {
- type = base_type(type);
- if (is_type_array(type)) {
- ast_node(cl, CompoundLit, value.value_compound);
- isize elem_count = cl->elems.count;
- if (elem_count == 0) {
- ssa_fprintf(f, "zeroinitializer");
- break;
- }
-
- ssa_fprintf(f, "[");
- Type *elem_type = type->Array.elem;
-
- for (isize i = 0; i < elem_count; i++) {
- if (i > 0) {
- ssa_fprintf(f, ", ");
- }
- TypeAndValue *tav = type_and_value_of_expression(m->info, cl->elems.e[i]);
- GB_ASSERT(tav != NULL);
- ssa_print_compound_element(f, m, tav->value, elem_type);
- }
- for (isize i = elem_count; i < type->Array.count; i++) {
- if (i >= elem_count) {
- ssa_fprintf(f, ", ");
- }
- ssa_print_type(f, m, elem_type);
- ssa_fprintf(f, " zeroinitializer");
- }
-
- ssa_fprintf(f, "]");
- } else if (is_type_vector(type)) {
- ast_node(cl, CompoundLit, value.value_compound);
- isize elem_count = cl->elems.count;
- if (elem_count == 0) {
- ssa_fprintf(f, "zeroinitializer");
- break;
- }
-
- ssa_fprintf(f, "<");
- Type *elem_type = type->Vector.elem;
-
- if (elem_count == 1 && type->Vector.count > 1) {
- TypeAndValue *tav = type_and_value_of_expression(m->info, cl->elems.e[0]);
- GB_ASSERT(tav != NULL);
-
- for (isize i = 0; i < type->Vector.count; i++) {
- if (i > 0) {
- ssa_fprintf(f, ", ");
- }
- ssa_print_compound_element(f, m, tav->value, elem_type);
- }
- } else {
- for (isize i = 0; i < elem_count; i++) {
- if (i > 0) {
- ssa_fprintf(f, ", ");
- }
- TypeAndValue *tav = type_and_value_of_expression(m->info, cl->elems.e[i]);
- GB_ASSERT(tav != NULL);
- ssa_print_compound_element(f, m, tav->value, elem_type);
- }
- }
-
- ssa_fprintf(f, ">");
- } else if (is_type_struct(type)) {
- gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&m->tmp_arena);
-
- ast_node(cl, CompoundLit, value.value_compound);
-
- if (cl->elems.count == 0) {
- ssa_fprintf(f, "zeroinitializer");
- break;
- }
-
-
- isize value_count = type->Record.field_count;
- ExactValue *values = gb_alloc_array(m->tmp_allocator, ExactValue, value_count);
-
-
- if (cl->elems.e[0]->kind == AstNode_FieldValue) {
- isize elem_count = cl->elems.count;
- for (isize i = 0; i < elem_count; i++) {
- ast_node(fv, FieldValue, cl->elems.e[i]);
- String name = fv->field->Ident.string;
-
- TypeAndValue *tav = type_and_value_of_expression(m->info, fv->value);
- GB_ASSERT(tav != NULL);
-
- Selection sel = lookup_field(m->allocator, type, name, false);
- Entity *f = type->Record.fields[sel.index.e[0]];
-
- values[f->Variable.field_index] = tav->value;
- }
- } else {
- for (isize i = 0; i < value_count; i++) {
- TypeAndValue *tav = type_and_value_of_expression(m->info, cl->elems.e[i]);
- GB_ASSERT(tav != NULL);
-
- Entity *f = type->Record.fields_in_src_order[i];
-
- values[f->Variable.field_index] = tav->value;
- }
- }
-
-
-
- if (type->Record.struct_is_packed) {
- ssa_fprintf(f, "<");
- }
- ssa_fprintf(f, "{");
-
-
- for (isize i = 0; i < value_count; i++) {
- if (i > 0) {
- ssa_fprintf(f, ", ");
- }
- Type *elem_type = type->Record.fields[i]->type;
-
- ssa_print_compound_element(f, m, values[i], elem_type);
- }
-
-
- ssa_fprintf(f, "}");
- if (type->Record.struct_is_packed) {
- ssa_fprintf(f, ">");
- }
-
- gb_temp_arena_memory_end(tmp);
- } else {
- ssa_fprintf(f, "zeroinitializer");
- }
-
- } break;
-
- default:
- ssa_fprintf(f, "zeroinitializer");
- // GB_PANIC("Invalid ExactValue: %d", value.kind);
- break;
- }
-}
-
-void ssa_print_block_name(ssaFileBuffer *f, ssaBlock *b) {
- if (b != NULL) {
- ssa_print_escape_string(f, b->label, false);
- ssa_fprintf(f, "-%td", b->index);
- } else {
- ssa_fprintf(f, "<INVALID-BLOCK>");
- }
-}
-
-bool ssa_print_is_proc_global(ssaModule *m, ssaProcedure *proc) {
- if (proc->entity != NULL &&
- proc->entity->kind == Entity_Procedure) {
- if (m->entry_point_entity == proc->entity) {
- // TODO(bill): This may not be needed during windows
- return true;
- }
- if (proc->entity->Procedure.link_name.len > 0) {
- return true;
- }
- }
- return (proc->tags & (ProcTag_foreign|ProcTag_export)) != 0;
-}
-
-void ssa_print_value(ssaFileBuffer *f, ssaModule *m, ssaValue *value, Type *type_hint) {
- if (value == NULL) {
- ssa_fprintf(f, "!!!NULL_VALUE");
- return;
- }
- switch (value->kind) {
- default: GB_PANIC("Unknown ssaValue kind"); break;
-
- case ssaValue_Constant:
- ssa_print_exact_value(f, m, value->Constant.value, type_hint);
- break;
-
- case ssaValue_ConstantSlice: {
- ssaValueConstantSlice *cs = &value->ConstantSlice;
- if (cs->backing_array == NULL || cs->count == 0) {
- ssa_fprintf(f, "zeroinitializer");
- } else {
- Type *at = base_type(type_deref(ssa_type(cs->backing_array)));
- Type *et = at->Array.elem;
- ssa_fprintf(f, "{");
- ssa_print_type(f, m, et);
- ssa_fprintf(f, "* getelementptr inbounds (");
- ssa_print_type(f, m, at);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, at);
- ssa_fprintf(f, "* ");
- ssa_print_value(f, m, cs->backing_array, at);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " 0, i32 0), ");
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " %lld, ", cs->count);
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " %lld}", cs->count);
- }
- } break;
-
- case ssaValue_Nil:
- ssa_fprintf(f, "zeroinitializer");
- break;
-
- case ssaValue_TypeName:
- ssa_print_encoded_local(f, value->TypeName.name);
- break;
- case ssaValue_Global: {
- Scope *scope = value->Global.entity->scope;
- bool in_global_scope = false;
- if (scope != NULL) {
- in_global_scope = scope->is_global || scope->is_init;
- }
- ssa_print_encoded_global(f, value->Global.entity->token.string, in_global_scope);
- } break;
- case ssaValue_Param:
- ssa_print_encoded_local(f, value->Param.entity->token.string);
- break;
- case ssaValue_Proc:
- ssa_print_encoded_global(f, value->Proc.name, ssa_print_is_proc_global(m, &value->Proc));
- break;
- case ssaValue_Instr:
- ssa_fprintf(f, "%%%d", value->index);
- break;
- }
-}
-
-void ssa_print_calling_convention(ssaFileBuffer *f, ssaModule *m, ProcCallingConvention cc) {
- switch (cc) {
- case ProcCC_Odin: ssa_fprintf(f, ""); break;
- case ProcCC_C: ssa_fprintf(f, "ccc "); break;
- case ProcCC_Std: ssa_fprintf(f, "cc 64 "); break;
- case ProcCC_Fast: ssa_fprintf(f, "cc 65 "); break;
- default: GB_PANIC("unknown calling convention: %d", cc);
- }
-}
-
-void ssa_print_instr(ssaFileBuffer *f, ssaModule *m, ssaValue *value) {
- GB_ASSERT(value->kind == ssaValue_Instr);
- ssaInstr *instr = &value->Instr;
-
- ssa_fprintf(f, "\t");
-
- switch (instr->kind) {
- case ssaInstr_StartupRuntime: {
- ssa_fprintf(f, "call void ");
- ssa_print_encoded_global(f, str_lit(SSA_STARTUP_RUNTIME_PROC_NAME), false);
- ssa_fprintf(f, "()\n");
- } break;
-
- case ssaInstr_Comment:
- ssa_fprintf(f, "; %.*s\n", LIT(instr->Comment.text));
- break;
-
- case ssaInstr_Local: {
- Type *type = instr->Local.entity->type;
- ssa_fprintf(f, "%%%d = alloca ", value->index);
- ssa_print_type(f, m, type);
- ssa_fprintf(f, ", align %lld\n", type_align_of(m->sizes, m->allocator, type));
- } break;
-
- case ssaInstr_ZeroInit: {
- Type *type = type_deref(ssa_type(instr->ZeroInit.address));
- ssa_fprintf(f, "store ");
- ssa_print_type(f, m, type);
- ssa_fprintf(f, " zeroinitializer, ");
- ssa_print_type(f, m, type);
- ssa_fprintf(f, "* %%%d\n", instr->ZeroInit.address->index);
- } break;
-
- case ssaInstr_Store: {
- Type *type = ssa_type(instr->Store.value);
- ssa_fprintf(f, "store ");
- ssa_print_type(f, m, type);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->Store.value, type);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, type);
- ssa_fprintf(f, "* ");
- ssa_print_value(f, m, instr->Store.address, type);
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_Load: {
- Type *type = instr->Load.type;
- ssa_fprintf(f, "%%%d = load ", value->index);
- ssa_print_type(f, m, type);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, type);
- ssa_fprintf(f, "* ");
- ssa_print_value(f, m, instr->Load.address, type);
- ssa_fprintf(f, ", align %lld\n", type_align_of(m->sizes, m->allocator, type));
- } break;
-
- case ssaInstr_ArrayElementPtr: {
- Type *et = ssa_type(instr->ArrayElementPtr.address);
- ssa_fprintf(f, "%%%d = getelementptr inbounds ", value->index);
-
- ssa_print_type(f, m, type_deref(et));
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, et);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->ArrayElementPtr.address, et);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " 0, ");
-
- ssaValue *index =instr->ArrayElementPtr.elem_index;
- Type *t = ssa_type(index);
- ssa_print_type(f, m, t);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, index, t);
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_StructElementPtr: {
- Type *et = ssa_type(instr->StructElementPtr.address);
- ssa_fprintf(f, "%%%d = getelementptr inbounds ", value->index);
-
- ssa_print_type(f, m, type_deref(et));
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, et);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->StructElementPtr.address, et);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " 0, ");
- ssa_print_type(f, m, t_i32);
- ssa_fprintf(f, " %d", instr->StructElementPtr.elem_index);
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_PtrOffset: {
- Type *pt = ssa_type(instr->PtrOffset.address);
- ssa_fprintf(f, "%%%d = getelementptr inbounds ", value->index);
- ssa_print_type(f, m, type_deref(pt));
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, pt);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->PtrOffset.address, pt);
-
- ssaValue *offset = instr->PtrOffset.offset;
- Type *t = ssa_type(offset);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, t);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, offset, t);
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_Phi: {
- ssa_fprintf(f, "%%%d = phi ", value->index);
- ssa_print_type(f, m, instr->Phi.type);
- ssa_fprintf(f, " ", value->index);
-
- for (isize i = 0; i < instr->Phi.edges.count; i++) {
- if (i > 0) {
- ssa_fprintf(f, ", ");
- }
-
- ssaValue *edge = instr->Phi.edges.e[i];
- ssaBlock *block = NULL;
- if (instr->parent != NULL &&
- i < instr->parent->preds.count) {
- block = instr->parent->preds.e[i];
- }
-
- ssa_fprintf(f, "[ ");
- ssa_print_value(f, m, edge, instr->Phi.type);
- ssa_fprintf(f, ", %%");
- ssa_print_block_name(f, block);
- ssa_fprintf(f, " ]");
- }
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_ArrayExtractValue: {
- Type *et = ssa_type(instr->ArrayExtractValue.address);
- ssa_fprintf(f, "%%%d = extractvalue ", value->index);
-
- ssa_print_type(f, m, et);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->ArrayExtractValue.address, et);
- ssa_fprintf(f, ", %d\n", instr->ArrayExtractValue.index);
- } break;
-
- case ssaInstr_StructExtractValue: {
- Type *et = ssa_type(instr->StructExtractValue.address);
- ssa_fprintf(f, "%%%d = extractvalue ", value->index);
-
- ssa_print_type(f, m, et);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->StructExtractValue.address, et);
- ssa_fprintf(f, ", %d\n", instr->StructExtractValue.index);
- } break;
-
- case ssaInstr_UnionTagPtr: {
- Type *et = ssa_type(instr->UnionTagPtr.address);
- ssa_fprintf(f, "%%%d = getelementptr inbounds ", value->index);
-
- ssa_print_type(f, m, type_deref(et));
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, et);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->UnionTagPtr.address, et);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " 0, ");
- ssa_print_type(f, m, t_i32);
- ssa_fprintf(f, " %d", 2);
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_UnionTagValue: {
- Type *et = ssa_type(instr->UnionTagValue.address);
- ssa_fprintf(f, "%%%d = extractvalue ", value->index);
-
- ssa_print_type(f, m, et);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->UnionTagValue.address, et);
- ssa_fprintf(f, ", %d\n", 2);
- } break;
-
- case ssaInstr_Jump: {;
- ssa_fprintf(f, "br label %%");
- ssa_print_block_name(f, instr->Jump.block);
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_If: {;
- ssa_fprintf(f, "br ");
- ssa_print_type(f, m, t_bool);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->If.cond, t_bool);
- ssa_fprintf(f, ", ", instr->If.cond->index);
- ssa_fprintf(f, "label %%"); ssa_print_block_name(f, instr->If.true_block);
- ssa_fprintf(f, ", label %%"); ssa_print_block_name(f, instr->If.false_block);
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_Return: {
- ssaInstrReturn *ret = &instr->Return;
- ssa_fprintf(f, "ret ");
- if (ret->value == NULL) {
- ssa_fprintf(f, "void");
- } else {
- Type *t = ssa_type(ret->value);
- ssa_print_type(f, m, t);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, ret->value, t);
- }
-
- ssa_fprintf(f, "\n");
-
- } break;
-
- case ssaInstr_Conv: {
- ssaInstrConv *c = &instr->Conv;
- ssa_fprintf(f, "%%%d = %.*s ", value->index, LIT(ssa_conv_strings[c->kind]));
- ssa_print_type(f, m, c->from);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, c->value, c->from);
- ssa_fprintf(f, " to ");
- ssa_print_type(f, m, c->to);
- ssa_fprintf(f, "\n");
-
- } break;
-
- case ssaInstr_Unreachable: {
- ssa_fprintf(f, "unreachable\n");
- } break;
-
- case ssaInstr_UnaryOp: {
- ssaInstrUnaryOp *uo = &value->Instr.UnaryOp;
- Type *type = base_type(ssa_type(uo->expr));
- Type *elem_type = type;
- while (elem_type->kind == Type_Vector) {
- elem_type = base_type(elem_type->Vector.elem);
- }
-
- ssa_fprintf(f, "%%%d = ", value->index);
- switch (uo->op) {
- case Token_Sub:
- if (is_type_float(elem_type)) {
- ssa_fprintf(f, "fsub");
- } else {
- ssa_fprintf(f, "sub");
- }
- break;
- case Token_Xor:
- case Token_Not:
- GB_ASSERT(is_type_integer(type) || is_type_boolean(type));
- ssa_fprintf(f, "xor");
- break;
- default:
- GB_PANIC("Unknown unary operator");
- break;
- }
-
- ssa_fprintf(f, " ");
- ssa_print_type(f, m, type);
- ssa_fprintf(f, " ");
- switch (uo->op) {
- case Token_Sub:
- if (is_type_float(elem_type)) {
- ssa_print_exact_value(f, m, make_exact_value_float(0), type);
- } else {
- ssa_fprintf(f, "0");
- }
- break;
- case Token_Xor:
- case Token_Not:
- GB_ASSERT(is_type_integer(type) || is_type_boolean(type));
- ssa_fprintf(f, "-1");
- break;
- }
- ssa_fprintf(f, ", ");
- ssa_print_value(f, m, uo->expr, type);
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_BinaryOp: {
- ssaInstrBinaryOp *bo = &value->Instr.BinaryOp;
- Type *type = base_type(ssa_type(bo->left));
- Type *elem_type = type;
- while (elem_type->kind == Type_Vector) {
- elem_type = base_type(elem_type->Vector.elem);
- }
-
- ssa_fprintf(f, "%%%d = ", value->index);
-
- if (gb_is_between(bo->op, Token__ComparisonBegin+1, Token__ComparisonEnd-1)) {
- if (is_type_string(elem_type)) {
- ssa_fprintf(f, "call ");
- ssa_print_calling_convention(f, m, ProcCC_Odin);
- ssa_print_type(f, m, t_bool);
- char *runtime_proc = "";
- switch (bo->op) {
- case Token_CmpEq: runtime_proc = "__string_eq"; break;
- case Token_NotEq: runtime_proc = "__string_ne"; break;
- case Token_Lt: runtime_proc = "__string_lt"; break;
- case Token_Gt: runtime_proc = "__string_gt"; break;
- case Token_LtEq: runtime_proc = "__string_le"; break;
- case Token_GtEq: runtime_proc = "__string_gt"; break;
- }
-
- ssa_fprintf(f, " ");
- ssa_print_encoded_global(f, make_string_c(runtime_proc), false);
- ssa_fprintf(f, "(");
- ssa_print_type(f, m, type);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, bo->left, type);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, type);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, bo->right, type);
- ssa_fprintf(f, ")\n");
- return;
-
- } else if (is_type_float(elem_type)) {
- ssa_fprintf(f, "fcmp ");
- switch (bo->op) {
- case Token_CmpEq: ssa_fprintf(f, "oeq"); break;
- case Token_NotEq: ssa_fprintf(f, "one"); break;
- case Token_Lt: ssa_fprintf(f, "olt"); break;
- case Token_Gt: ssa_fprintf(f, "ogt"); break;
- case Token_LtEq: ssa_fprintf(f, "ole"); break;
- case Token_GtEq: ssa_fprintf(f, "oge"); break;
- }
- } else {
- ssa_fprintf(f, "icmp ");
- if (bo->op != Token_CmpEq &&
- bo->op != Token_NotEq) {
- if (is_type_unsigned(elem_type)) {
- ssa_fprintf(f, "u");
- } else {
- ssa_fprintf(f, "s");
- }
- }
- switch (bo->op) {
- case Token_CmpEq: ssa_fprintf(f, "eq"); break;
- case Token_NotEq: ssa_fprintf(f, "ne"); break;
- case Token_Lt: ssa_fprintf(f, "lt"); break;
- case Token_Gt: ssa_fprintf(f, "gt"); break;
- case Token_LtEq: ssa_fprintf(f, "le"); break;
- case Token_GtEq: ssa_fprintf(f, "ge"); break;
- default: GB_PANIC("invalid comparison");break;
- }
- }
- } else {
- if (is_type_float(elem_type)) {
- ssa_fprintf(f, "f");
- }
-
- switch (bo->op) {
- case Token_Add: ssa_fprintf(f, "add"); break;
- case Token_Sub: ssa_fprintf(f, "sub"); break;
- case Token_And: ssa_fprintf(f, "and"); break;
- case Token_Or: ssa_fprintf(f, "or"); break;
- case Token_Xor: ssa_fprintf(f, "xor"); break;
- case Token_Shl: ssa_fprintf(f, "shl"); break;
- case Token_Shr: ssa_fprintf(f, "lshr"); break;
- case Token_Mul: ssa_fprintf(f, "mul"); break;
- case Token_Not: ssa_fprintf(f, "xor"); break;
-
- case Token_AndNot: GB_PANIC("Token_AndNot Should never be called");
-
- default: {
- if (!is_type_float(elem_type)) {
- if (is_type_unsigned(elem_type)) {
- ssa_fprintf(f, "u");
- } else {
- ssa_fprintf(f, "s");
- }
- }
-
- switch (bo->op) {
- case Token_Quo: ssa_fprintf(f, "div"); break;
- case Token_Mod: ssa_fprintf(f, "rem"); break;
- }
- } break;
- }
- }
-
- ssa_fprintf(f, " ");
- ssa_print_type(f, m, type);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, bo->left, type);
- ssa_fprintf(f, ", ");
- ssa_print_value(f, m, bo->right, type);
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_Call: {
- ssaInstrCall *call = &instr->Call;
- Type *proc_type = base_type(ssa_type(call->value));
- GB_ASSERT(is_type_proc(proc_type));
- Type *result_type = call->type;
- if (result_type) {
- ssa_fprintf(f, "%%%d = ", value->index);
- }
- ssa_fprintf(f, "call ");
- ssa_print_calling_convention(f, m, proc_type->Proc.calling_convention);
- if (result_type) {
- ssa_print_type(f, m, result_type);
- } else {
- ssa_fprintf(f, "void");
- }
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, call->value, call->type);
-
-
- ssa_fprintf(f, "(");
- if (call->arg_count > 0) {
- Type *proc_type = base_type(ssa_type(call->value));
- GB_ASSERT(proc_type->kind == Type_Proc);
- TypeTuple *params = &proc_type->Proc.params->Tuple;
- for (isize i = 0; i < call->arg_count; i++) {
- Entity *e = params->variables[i];
- GB_ASSERT(e != NULL);
- Type *t = e->type;
- if (i > 0) {
- ssa_fprintf(f, ", ");
- }
- ssa_print_type(f, m, t);
- ssa_fprintf(f, " ");
- ssaValue *arg = call->args[i];
- ssa_print_value(f, m, arg, t);
- }
- }
- ssa_fprintf(f, ")\n");
-
- } break;
-
- case ssaInstr_Select: {
- ssa_fprintf(f, "%%%d = select i1 ", value->index);
- ssa_print_value(f, m, instr->Select.cond, t_bool);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, ssa_type(instr->Select.true_value));
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->Select.true_value, ssa_type(instr->Select.true_value));
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, ssa_type(instr->Select.false_value));
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->Select.false_value, ssa_type(instr->Select.false_value));
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_VectorExtractElement: {
- Type *vt = ssa_type(instr->VectorExtractElement.vector);
- Type *it = ssa_type(instr->VectorExtractElement.index);
- ssa_fprintf(f, "%%%d = extractelement ", value->index);
-
- ssa_print_type(f, m, vt);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->VectorExtractElement.vector, vt);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, it);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, instr->VectorExtractElement.index, it);
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_VectorInsertElement: {
- ssaInstrVectorInsertElement *ie = &instr->VectorInsertElement;
- Type *vt = ssa_type(ie->vector);
- ssa_fprintf(f, "%%%d = insertelement ", value->index);
-
- ssa_print_type(f, m, vt);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, ie->vector, vt);
- ssa_fprintf(f, ", ");
-
- ssa_print_type(f, m, ssa_type(ie->elem));
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, ie->elem, ssa_type(ie->elem));
- ssa_fprintf(f, ", ");
-
- ssa_print_type(f, m, ssa_type(ie->index));
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, ie->index, ssa_type(ie->index));
-
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_VectorShuffle: {
- ssaInstrVectorShuffle *sv = &instr->VectorShuffle;
- Type *vt = ssa_type(sv->vector);
- ssa_fprintf(f, "%%%d = shufflevector ", value->index);
-
- ssa_print_type(f, m, vt);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, sv->vector, vt);
- ssa_fprintf(f, ", ");
-
- ssa_print_type(f, m, vt);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, sv->vector, vt);
- ssa_fprintf(f, ", ");
-
- ssa_fprintf(f, "<%td x i32> <", sv->index_count);
- for (isize i = 0; i < sv->index_count; i++) {
- if (i > 0) {
- ssa_fprintf(f, ", ");
- }
- ssa_fprintf(f, "i32 %d", sv->indices[i]);
- }
- ssa_fprintf(f, ">");
- ssa_fprintf(f, "\n");
- } break;
-
- case ssaInstr_BoundsCheck: {
- ssaInstrBoundsCheck *bc = &instr->BoundsCheck;
- ssa_fprintf(f, "call void ");
- ssa_print_encoded_global(f, str_lit("__bounds_check_error"), false);
- ssa_fprintf(f, "(");
- ssa_print_compound_element(f, m, make_exact_value_string(bc->pos.file), t_string);
- ssa_fprintf(f, ", ");
-
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " ");
- ssa_print_exact_value(f, m, make_exact_value_integer(bc->pos.line), t_int);
- ssa_fprintf(f, ", ");
-
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " ");
- ssa_print_exact_value(f, m, make_exact_value_integer(bc->pos.column), t_int);
- ssa_fprintf(f, ", ");
-
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, bc->index, t_int);
- ssa_fprintf(f, ", ");
-
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, bc->len, t_int);
-
- ssa_fprintf(f, ")\n");
- } break;
-
- case ssaInstr_SliceBoundsCheck: {
- ssaInstrSliceBoundsCheck *bc = &instr->SliceBoundsCheck;
- ssa_fprintf(f, "call void ");
- if (bc->is_substring) {
- ssa_print_encoded_global(f, str_lit("__substring_expr_error"), false);
- } else {
- ssa_print_encoded_global(f, str_lit("__slice_expr_error"), false);
- }
-
- ssa_fprintf(f, "(");
- ssa_print_compound_element(f, m, make_exact_value_string(bc->pos.file), t_string);
- ssa_fprintf(f, ", ");
-
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " ");
- ssa_print_exact_value(f, m, make_exact_value_integer(bc->pos.line), t_int);
- ssa_fprintf(f, ", ");
-
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " ");
- ssa_print_exact_value(f, m, make_exact_value_integer(bc->pos.column), t_int);
- ssa_fprintf(f, ", ");
-
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, bc->low, t_int);
- ssa_fprintf(f, ", ");
-
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, " ");
- ssa_print_value(f, m, bc->high, t_int);
-
- ssa_fprintf(f, ")\n");
- } break;
-
-
- default: {
- GB_PANIC("<unknown instr> %d\n", instr->kind);
- ssa_fprintf(f, "; <unknown instr> %d\n", instr->kind);
- } break;
- }
-}
-
-
-void ssa_print_proc(ssaFileBuffer *f, ssaModule *m, ssaProcedure *proc) {
- if (proc->body == NULL) {
- ssa_fprintf(f, "declare ");
- if (proc->tags & ProcTag_dll_import) {
- ssa_fprintf(f, "dllimport ");
- }
- } else {
- ssa_fprintf(f, "\n");
- ssa_fprintf(f, "define ");
- if (m->build_context->is_dll) {
- // if (proc->tags & (ProcTag_export|ProcTag_dll_export)) {
- if (proc->tags & (ProcTag_export)) {
- ssa_fprintf(f, "dllexport ");
- }
- }
- }
-
- TypeProc *proc_type = &proc->type->Proc;
-
- ssa_print_calling_convention(f, m, proc_type->calling_convention);
-
- if (proc_type->result_count == 0) {
- ssa_fprintf(f, "void");
- } else {
- ssa_print_type(f, m, proc_type->results);
- }
-
- ssa_fprintf(f, " ");
- ssa_print_encoded_global(f, proc->name, ssa_print_is_proc_global(m, proc));
- ssa_fprintf(f, "(");
-
- if (proc_type->param_count > 0) {
- TypeTuple *params = &proc_type->params->Tuple;
- for (isize i = 0; i < params->variable_count; i++) {
- Entity *e = params->variables[i];
- if (i > 0) {
- ssa_fprintf(f, ", ");
- }
- ssa_print_type(f, m, e->type);
- if (proc->body != NULL) {
- if (!str_eq(e->token.string, str_lit("")) &&
- !str_eq(e->token.string, str_lit("_"))) {
- ssa_fprintf(f, " %%%.*s", LIT(e->token.string));
- } else {
- ssa_fprintf(f, " %%_.param_%td", i);
- }
- }
- }
- }
-
- ssa_fprintf(f, ") ");
-
- if (proc->tags & ProcTag_inline) {
- ssa_fprintf(f, "alwaysinline ");
- }
- if (proc->tags & ProcTag_no_inline) {
- ssa_fprintf(f, "noinline ");
- }
-
-
- if (proc->module->generate_debug_info && proc->entity != NULL) {
- if (proc->body != NULL) {
- ssaDebugInfo *di = *map_ssa_debug_info_get(&proc->module->debug_info, hash_pointer(proc->entity));
- GB_ASSERT(di->kind == ssaDebugInfo_Proc);
- ssa_fprintf(f, "!dbg !%d ", di->id);
- }
- }
-
-
- if (proc->body != NULL) {
- // ssa_fprintf(f, "nounwind uwtable {\n");
-
- ssa_fprintf(f, "{\n");
- for_array(i, proc->blocks) {
- ssaBlock *block = proc->blocks.e[i];
-
- if (i > 0) ssa_fprintf(f, "\n");
- ssa_print_block_name(f, block);
- ssa_fprintf(f, ":\n");
-
- for_array(j, block->instrs) {
- ssaValue *value = block->instrs.e[j];
- ssa_print_instr(f, m, value);
- }
- }
- ssa_fprintf(f, "}\n");
- } else {
- ssa_fprintf(f, "\n");
- }
-
- for_array(i, proc->children) {
- ssa_print_proc(f, m, proc->children.e[i]);
- }
-}
-
-void ssa_print_type_name(ssaFileBuffer *f, ssaModule *m, ssaValue *v) {
- GB_ASSERT(v->kind == ssaValue_TypeName);
- Type *bt = base_type(ssa_type(v));
- if (!is_type_struct(bt) && !is_type_union(bt)) {
- return;
- }
- ssa_print_encoded_local(f, v->TypeName.name);
- ssa_fprintf(f, " = type ");
- ssa_print_type(f, m, base_type(v->TypeName.type));
- ssa_fprintf(f, "\n");
-}
-
-void ssa_print_llvm_ir(ssaGen *ssa) {
- ssaModule *m = &ssa->module;
- ssaFileBuffer buf = {0}, *f = &buf;
- ssa_file_buffer_init(f, &ssa->output_file);
-
- if (m->layout.len > 0) {
- ssa_fprintf(f, "target datalayout = \"%.*s\"\n", LIT(m->layout));
- }
-
- ssa_print_encoded_local(f, str_lit("..string"));
- ssa_fprintf(f, " = type {i8*, ");
- ssa_print_type(f, m, t_int);
- ssa_fprintf(f, "} ; Basic_string\n");
- ssa_print_encoded_local(f, str_lit("..rawptr"));
- ssa_fprintf(f, " = type i8* ; Basic_rawptr\n");
-
- ssa_print_encoded_local(f, str_lit("..any"));
- ssa_fprintf(f, " = type {");
- ssa_print_type(f, m, t_type_info_ptr);
- ssa_fprintf(f, ", ");
- ssa_print_type(f, m, t_rawptr);
- ssa_fprintf(f, "} ; Basic_any\n");
-
-
- for_array(member_index, m->members.entries) {
- MapSsaValueEntry *entry = &m->members.entries.e[member_index];
- ssaValue *v = entry->value;
- if (v->kind != ssaValue_TypeName) {
- continue;
- }
- ssa_print_type_name(f, m, v);
- }
-
- ssa_fprintf(f, "\n");
-
- bool dll_main_found = false;
-
- for_array(member_index, m->members.entries) {
- MapSsaValueEntry *entry = &m->members.entries.e[member_index];
- ssaValue *v = entry->value;
- if (v->kind != ssaValue_Proc) {
- continue;
- }
-
- if (v->Proc.body == NULL) {
- ssa_print_proc(f, m, &v->Proc);
- }
- }
-
- for_array(member_index, m->members.entries) {
- MapSsaValueEntry *entry = &m->members.entries.e[member_index];
- ssaValue *v = entry->value;
- if (v->kind != ssaValue_Proc) {
- continue;
- }
-
- if (v->Proc.body != NULL) {
- ssa_print_proc(f, m, &v->Proc);
- }
- }
-
- for_array(member_index, m->members.entries) {
- MapSsaValueEntry *entry = &m->members.entries.e[member_index];
- ssaValue *v = entry->value;
- if (v->kind != ssaValue_Global) {
- continue;
- }
- ssaValueGlobal *g = &v->Global;
- Scope *scope = g->entity->scope;
- bool in_global_scope = false;
- if (scope != NULL) {
- in_global_scope = scope->is_global || scope->is_init;
- }
- ssa_print_encoded_global(f, g->entity->token.string, in_global_scope);
- ssa_fprintf(f, " = ");
- if (g->is_thread_local) {
- ssa_fprintf(f, "thread_local ");
- }
-
- if (g->is_private) {
- ssa_fprintf(f, "private ");
- }
- if (g->is_constant) {
- if (g->is_unnamed_addr) {
- ssa_fprintf(f, "unnamed_addr ");
- }
- ssa_fprintf(f, "constant ");
- } else {
- ssa_fprintf(f, "global ");
- }
-
-
- ssa_print_type(f, m, g->entity->type);
- ssa_fprintf(f, " ");
- if (g->value != NULL) {
- ssa_print_value(f, m, g->value, g->entity->type);
- } else {
- ssa_fprintf(f, "zeroinitializer");
- }
- ssa_fprintf(f, "\n");
- }
-
-
-#if 0
- if (m->generate_debug_info) {
- ssa_fprintf(f, "\n");
- ssa_fprintf(f, "!llvm.dbg.cu = !{!0}\n");
-
- for_array(di_index, m->debug_info.entries) {
- MapSsaDebugInfoEntry *entry = &m->debug_info.entries.e[di_index];
- ssaDebugInfo *di = entry->value;
- ssa_fprintf(f, "!%d = ", di->id);
-
- switch (di->kind) {
- case ssaDebugInfo_CompileUnit: {
- auto *cu = &di->CompileUnit;
- ssaDebugInfo *file = *map_ssa_debug_info_get(&m->debug_info, hash_pointer(cu->file));
- ssa_fprintf(f,
- "distinct !DICompileUnit("
- "language: DW_LANG_Go, " // Is this good enough?
- "file: !%d, "
- "producer: \"%.*s\", "
- "flags: \"\", "
- "runtimeVersion: 0, "
- "isOptimized: false, "
- "emissionKind: FullDebug"
- ")",
- file->id, LIT(cu->producer));
-
- } break;
- case ssaDebugInfo_File:
- ssa_fprintf(f, "!DIFile(filename: \"");
- ssa_print_escape_string(f, di->File.filename, false);
- ssa_fprintf(f, "\", directory: \"");
- ssa_print_escape_string(f, di->File.directory, false);
- ssa_fprintf(f, "\")");
- break;
- case ssaDebugInfo_Proc:
- ssa_fprintf(f, "distinct !DISubprogram("
- "name: \"%.*s\", "
- // "linkageName: \"\", "
- "file: !%d, "
- "line: %td, "
- "isDefinition: true, "
- "isLocal: false, "
- "unit: !0"
- ")",
- LIT(di->Proc.name),
- di->Proc.file->id,
- di->Proc.pos.line);
- break;
-
- case ssaDebugInfo_AllProcs:
- ssa_fprintf(f, "!{");
- for_array(proc_index, di->AllProcs.procs) {
- ssaDebugInfo *p = di->AllProcs.procs.e[proc_index];
- if (proc_index > 0) {ssa_fprintf(f, ",");}
- ssa_fprintf(f, "!%d", p->id);
- }
- ssa_fprintf(f, "}");
- break;
- }
-
- ssa_fprintf(f, "\n");
- }
- }
-#endif
- ssa_file_buffer_destroy(f);
-}