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@@ -20,19 +20,18 @@ NOT_FOUND :: -1
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// the environment is a 0 delimited list of <key>=<value> strings
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_env: [dynamic]string
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-_env_mutex: sync.Mutex
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+_env_mutex: sync.Recursive_Mutex
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// We need to be able to figure out if the environment variable
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// is contained in the original environment or not. This also
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// serves as a flag to determine if we have built _env.
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-_org_env_begin: uintptr
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-_org_env_end: uintptr
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+_org_env_begin: uintptr // atomic
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+_org_env_end: uintptr // guarded by _env_mutex
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// Returns value + index location into _env
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// or -1 if not found
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_lookup :: proc(key: string) -> (value: string, idx: int) {
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- sync.mutex_lock(&_env_mutex)
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- defer sync.mutex_unlock(&_env_mutex)
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+ sync.guard(&_env_mutex)
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for entry, i in _env {
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if k, v := _kv_from_entry(entry); k == key {
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@@ -43,7 +42,7 @@ _lookup :: proc(key: string) -> (value: string, idx: int) {
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}
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_lookup_env :: proc(key: string, allocator: runtime.Allocator) -> (value: string, found: bool) {
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- if _org_env_begin == 0 {
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+ if intrinsics.atomic_load_explicit(&_org_env_begin, .Acquire) == 0 {
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_build_env()
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}
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@@ -55,9 +54,10 @@ _lookup_env :: proc(key: string, allocator: runtime.Allocator) -> (value: string
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}
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_set_env :: proc(key, v_new: string) -> Error {
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- if _org_env_begin == 0 {
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+ if intrinsics.atomic_load_explicit(&_org_env_begin, .Acquire) == 0 {
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_build_env()
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}
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+ sync.guard(&_env_mutex)
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// all key values are stored as "key=value\x00"
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kv_size := len(key) + len(v_new) + 2
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@@ -65,8 +65,6 @@ _set_env :: proc(key, v_new: string) -> Error {
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if v_curr == v_new {
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return nil
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}
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- sync.mutex_lock(&_env_mutex)
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- defer sync.mutex_unlock(&_env_mutex)
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unordered_remove(&_env, idx)
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@@ -101,16 +99,15 @@ _set_env :: proc(key, v_new: string) -> Error {
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intrinsics.mem_copy_non_overlapping(&val_slice[0], raw_data(v_new), len(v_new))
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val_slice[len(v_new)] = 0
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- sync.mutex_lock(&_env_mutex)
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append(&_env, string(k_addr[:kv_size - 1]))
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- sync.mutex_unlock(&_env_mutex)
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return nil
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}
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_unset_env :: proc(key: string) -> bool {
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- if _org_env_begin == 0 {
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+ if intrinsics.atomic_load_explicit(&_org_env_begin, .Acquire) == 0 {
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_build_env()
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}
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+ sync.guard(&_env_mutex)
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v: string
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i: int
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@@ -118,15 +115,13 @@ _unset_env :: proc(key: string) -> bool {
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return false
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}
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- sync.mutex_lock(&_env_mutex)
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unordered_remove(&_env, i)
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- sync.mutex_unlock(&_env_mutex)
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if _is_in_org_env(v) {
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return true
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}
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- // if we got this far, the envrionment variable
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+ // if we got this far, the environment variable
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// existed AND was allocated by us.
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k_addr, _ := _kv_addr_from_val(v, key)
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runtime.heap_free(k_addr)
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@@ -134,8 +129,7 @@ _unset_env :: proc(key: string) -> bool {
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}
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_clear_env :: proc() {
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- sync.mutex_lock(&_env_mutex)
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- defer sync.mutex_unlock(&_env_mutex)
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+ sync.guard(&_env_mutex)
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for kv in _env {
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if !_is_in_org_env(kv) {
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@@ -145,14 +139,16 @@ _clear_env :: proc() {
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clear(&_env)
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// nothing resides in the original environment either
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- _org_env_begin = ~uintptr(0)
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+ intrinsics.atomic_store_explicit(&_org_env_begin, ~uintptr(0), .Release)
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_org_env_end = ~uintptr(0)
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}
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_environ :: proc(allocator: runtime.Allocator) -> (environ: []string, err: Error) {
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- if _org_env_begin == 0 {
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+ if intrinsics.atomic_load_explicit(&_org_env_begin, .Acquire) == 0 {
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_build_env()
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}
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+ sync.guard(&_env_mutex)
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+
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env := make([dynamic]string, 0, len(_env), allocator) or_return
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defer if err != nil {
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for e in env {
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@@ -161,8 +157,6 @@ _environ :: proc(allocator: runtime.Allocator) -> (environ: []string, err: Error
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delete(env)
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}
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- sync.mutex_lock(&_env_mutex)
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- defer sync.mutex_unlock(&_env_mutex)
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for entry in _env {
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s := clone_string(entry, allocator) or_return
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append(&env, s)
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@@ -174,7 +168,7 @@ _environ :: proc(allocator: runtime.Allocator) -> (environ: []string, err: Error
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// The entire environment is stored as 0 terminated strings,
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// so there is no need to clone/free individual variables
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export_cstring_environment :: proc(allocator: runtime.Allocator) -> []cstring {
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- if _org_env_begin == 0 {
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+ if intrinsics.atomic_load_explicit(&_org_env_begin, .Acquire) == 0 {
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// The environment has not been modified, so we can just
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// send the original environment
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org_env := _get_original_env()
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@@ -182,12 +176,11 @@ export_cstring_environment :: proc(allocator: runtime.Allocator) -> []cstring {
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for ; org_env[n] != nil; n += 1 {}
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return slice.clone(org_env[:n + 1], allocator)
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}
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+ sync.guard(&_env_mutex)
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// NOTE: already terminated by nil pointer via + 1
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env := make([]cstring, len(_env) + 1, allocator)
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- sync.mutex_lock(&_env_mutex)
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- defer sync.mutex_unlock(&_env_mutex)
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for entry, i in _env {
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env[i] = cstring(raw_data(entry))
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}
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@@ -195,15 +188,14 @@ export_cstring_environment :: proc(allocator: runtime.Allocator) -> []cstring {
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}
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_build_env :: proc() {
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- sync.mutex_lock(&_env_mutex)
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- defer sync.mutex_unlock(&_env_mutex)
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- if _org_env_begin != 0 {
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+ sync.guard(&_env_mutex)
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+ if intrinsics.atomic_load_explicit(&_org_env_begin, .Acquire) != 0 {
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return
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}
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_env = make(type_of(_env), runtime.heap_allocator())
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cstring_env := _get_original_env()
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- _org_env_begin = uintptr(rawptr(cstring_env[0]))
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+ intrinsics.atomic_store_explicit(&_org_env_begin, uintptr(rawptr(cstring_env[0])), .Release)
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for i := 0; cstring_env[i] != nil; i += 1 {
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bytes := ([^]u8)(cstring_env[i])
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n := len(cstring_env[i])
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@@ -235,5 +227,5 @@ _kv_addr_from_val :: #force_inline proc(val: string, key: string) -> ([^]u8, [^]
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_is_in_org_env :: #force_inline proc(env_data: string) -> bool {
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addr := uintptr(raw_data(env_data))
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- return addr >= _org_env_begin && addr < _org_env_end
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+ return addr >= intrinsics.atomic_load_explicit(&_org_env_begin, .Acquire) && addr < _org_env_end
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}
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