init / create / destroy naming consistency
This commit is contained in:
+34
-28
@@ -2,6 +2,7 @@ package many_bits
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import "base:builtin"
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import "base:builtin"
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import "base:intrinsics"
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import "base:intrinsics"
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import "base:runtime"
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import "core:fmt"
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import "core:fmt"
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import "core:slice"
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import "core:slice"
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@@ -25,15 +26,20 @@ Bits :: struct {
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length: int, // Total number of bits being stored
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length: int, // Total number of bits being stored
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}
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}
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delete :: proc(bits: Bits, allocator := context.allocator) {
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destroy :: proc(bits: Bits, allocator := context.allocator) -> runtime.Allocator_Error {
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delete_slice(bits.int_array, allocator)
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return delete_slice(bits.int_array, allocator)
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}
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}
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make :: proc(#any_int length: int, allocator := context.allocator) -> Bits {
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create :: proc(
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return Bits {
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#any_int length: int,
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int_array = make_slice([]Int_Bits, ((length - 1) >> INDEX_SHIFT) + 1, allocator),
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allocator := context.allocator,
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length = length,
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) -> (
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}
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bits: Bits,
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err: runtime.Allocator_Error,
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) #optional_allocator_error {
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bits.int_array, err = make_slice([]Int_Bits, ((length - 1) >> INDEX_SHIFT) + 1, allocator)
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bits.length = length
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return bits, err
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}
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}
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// Sets all bits to 0 (false)
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// Sets all bits to 0 (false)
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@@ -507,8 +513,8 @@ import "core:testing"
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@(test)
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@(test)
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test_set :: proc(t: ^testing.T) {
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test_set :: proc(t: ^testing.T) {
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bits := make(128)
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bits := create(128)
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defer delete(bits)
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defer destroy(bits)
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set(bits, 0, true)
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set(bits, 0, true)
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testing.expect_value(t, bits.int_array[0], Int_Bits{0})
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testing.expect_value(t, bits.int_array[0], Int_Bits{0})
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@@ -524,8 +530,8 @@ test_set :: proc(t: ^testing.T) {
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@(test)
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@(test)
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test_get :: proc(t: ^testing.T) {
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test_get :: proc(t: ^testing.T) {
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bits := make(128)
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bits := create(128)
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defer delete(bits)
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defer destroy(bits)
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// Default is false
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// Default is false
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testing.expect(t, !get(bits, 0))
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testing.expect(t, !get(bits, 0))
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@@ -560,8 +566,8 @@ test_get :: proc(t: ^testing.T) {
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@(test)
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@(test)
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test_set_true_set_false :: proc(t: ^testing.T) {
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test_set_true_set_false :: proc(t: ^testing.T) {
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bits := make(128)
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bits := create(128)
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defer delete(bits)
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defer destroy(bits)
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// set_true within first uint
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// set_true within first uint
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set_true(bits, 0)
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set_true(bits, 0)
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@@ -605,8 +611,8 @@ all_true_test :: proc(t: ^testing.T) {
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uint_max := UINT_MAX
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uint_max := UINT_MAX
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all_ones := transmute(Int_Bits)uint_max
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all_ones := transmute(Int_Bits)uint_max
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bits := make(132)
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bits := create(132)
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defer delete(bits)
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defer destroy(bits)
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bits.int_array[0] = all_ones
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bits.int_array[0] = all_ones
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bits.int_array[1] = all_ones
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bits.int_array[1] = all_ones
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@@ -616,8 +622,8 @@ all_true_test :: proc(t: ^testing.T) {
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bits.int_array[2] = {0, 1, 2}
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bits.int_array[2] = {0, 1, 2}
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testing.expect(t, !all_true(bits))
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testing.expect(t, !all_true(bits))
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bits2 := make(1)
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bits2 := create(1)
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defer delete(bits2)
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defer destroy(bits2)
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bits2.int_array[0] = {0}
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bits2.int_array[0] = {0}
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testing.expect(t, all_true(bits2))
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testing.expect(t, all_true(bits2))
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@@ -628,8 +634,8 @@ test_range_true :: proc(t: ^testing.T) {
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uint_max := UINT_MAX
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uint_max := UINT_MAX
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all_ones := transmute(Int_Bits)uint_max
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all_ones := transmute(Int_Bits)uint_max
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bits := make(192)
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bits := create(192)
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defer delete(bits)
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defer destroy(bits)
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// Empty range is vacuously true
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// Empty range is vacuously true
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testing.expect(t, range_true(bits, 0, 0))
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testing.expect(t, range_true(bits, 0, 0))
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@@ -676,7 +682,7 @@ test_range_true :: proc(t: ^testing.T) {
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@(test)
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@(test)
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nearest_true_handles_same_word_and_boundaries :: proc(t: ^testing.T) {
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nearest_true_handles_same_word_and_boundaries :: proc(t: ^testing.T) {
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bits := make(128, context.temp_allocator)
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bits := create(128, context.temp_allocator)
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set_true(bits, 0)
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set_true(bits, 0)
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set_true(bits, 10)
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set_true(bits, 10)
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@@ -710,7 +716,7 @@ nearest_true_handles_same_word_and_boundaries :: proc(t: ^testing.T) {
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@(test)
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@(test)
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nearest_false_handles_same_word_and_boundaries :: proc(t: ^testing.T) {
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nearest_false_handles_same_word_and_boundaries :: proc(t: ^testing.T) {
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bits := make(128, context.temp_allocator)
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bits := create(128, context.temp_allocator)
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// Start with all bits true, then clear a few to false.
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// Start with all bits true, then clear a few to false.
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for i := 0; i < bits.length; i += 1 {
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for i := 0; i < bits.length; i += 1 {
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@@ -749,7 +755,7 @@ nearest_false_handles_same_word_and_boundaries :: proc(t: ^testing.T) {
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@(test)
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@(test)
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nearest_false_scans_across_words_and_returns_false_when_all_true :: proc(t: ^testing.T) {
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nearest_false_scans_across_words_and_returns_false_when_all_true :: proc(t: ^testing.T) {
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bits := make(192, context.temp_allocator)
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bits := create(192, context.temp_allocator)
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// Start with all bits true, then clear a couple far apart.
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// Start with all bits true, then clear a couple far apart.
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for i := 0; i < bits.length; i += 1 {
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for i := 0; i < bits.length; i += 1 {
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@@ -773,7 +779,7 @@ nearest_false_scans_across_words_and_returns_false_when_all_true :: proc(t: ^tes
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@(test)
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@(test)
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nearest_true_scans_across_words_and_returns_false_when_empty :: proc(t: ^testing.T) {
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nearest_true_scans_across_words_and_returns_false_when_empty :: proc(t: ^testing.T) {
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bits := make(192, context.temp_allocator)
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bits := create(192, context.temp_allocator)
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set_true(bits, 5)
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set_true(bits, 5)
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set_true(bits, 130)
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set_true(bits, 130)
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@@ -790,7 +796,7 @@ nearest_true_scans_across_words_and_returns_false_when_empty :: proc(t: ^testing
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@(test)
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@(test)
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nearest_false_handles_last_word_partial_length :: proc(t: ^testing.T) {
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nearest_false_handles_last_word_partial_length :: proc(t: ^testing.T) {
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bits := make(130, context.temp_allocator)
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bits := create(130, context.temp_allocator)
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// Start with all bits true, then clear the first and last valid bits.
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// Start with all bits true, then clear the first and last valid bits.
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for i := 0; i < bits.length; i += 1 {
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for i := 0; i < bits.length; i += 1 {
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@@ -811,7 +817,7 @@ nearest_false_handles_last_word_partial_length :: proc(t: ^testing.T) {
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@(test)
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@(test)
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nearest_true_handles_last_word_partial_length :: proc(t: ^testing.T) {
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nearest_true_handles_last_word_partial_length :: proc(t: ^testing.T) {
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bits := make(130, context.temp_allocator)
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bits := create(130, context.temp_allocator)
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set_true(bits, 0)
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set_true(bits, 0)
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set_true(bits, 129)
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set_true(bits, 129)
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@@ -828,7 +834,7 @@ nearest_true_handles_last_word_partial_length :: proc(t: ^testing.T) {
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@(test)
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@(test)
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iterator_basic_mixed_bits :: proc(t: ^testing.T) {
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iterator_basic_mixed_bits :: proc(t: ^testing.T) {
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// Use non-word-aligned length to test partial last word handling
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// Use non-word-aligned length to test partial last word handling
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bits := make(100, context.temp_allocator)
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bits := create(100, context.temp_allocator)
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// Set specific bits: 0, 3, 64, 99 (last valid index)
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// Set specific bits: 0, 3, 64, 99 (last valid index)
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set_true(bits, 0)
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set_true(bits, 0)
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@@ -903,7 +909,7 @@ iterator_basic_mixed_bits :: proc(t: ^testing.T) {
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@(test)
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@(test)
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iterator_all_false_bits :: proc(t: ^testing.T) {
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iterator_all_false_bits :: proc(t: ^testing.T) {
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// Use non-word-aligned length
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// Use non-word-aligned length
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bits := make(100, context.temp_allocator)
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bits := create(100, context.temp_allocator)
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// All bits default to false, no need to set anything
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// All bits default to false, no need to set anything
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// Test iterate - should return all 100 bits as false
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// Test iterate - should return all 100 bits as false
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@@ -944,7 +950,7 @@ iterator_all_false_bits :: proc(t: ^testing.T) {
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@(test)
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@(test)
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iterator_all_true_bits :: proc(t: ^testing.T) {
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iterator_all_true_bits :: proc(t: ^testing.T) {
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// Use non-word-aligned length
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// Use non-word-aligned length
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bits := make(100, context.temp_allocator)
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bits := create(100, context.temp_allocator)
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// Set all bits to true
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// Set all bits to true
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for i := 0; i < bits.length; i += 1 {
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for i := 0; i < bits.length; i += 1 {
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set_true(bits, i)
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set_true(bits, i)
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+97
-57
@@ -1,35 +1,81 @@
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package ring
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package ring
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import "base:runtime"
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import "core:fmt"
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import "core:fmt"
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@(private)
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@(private)
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ODIN_BOUNDS_CHECK :: !ODIN_NO_BOUNDS_CHECK
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ODIN_BOUNDS_CHECK :: !ODIN_NO_BOUNDS_CHECK
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Ring :: struct($T: typeid) {
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Ring :: struct($E: typeid) {
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data: []T,
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data: []E,
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_end_index, len: int,
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_end_index, len: int,
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}
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}
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Ring_Soa :: struct($T: typeid) {
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Ring_Soa :: struct($E: typeid) {
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data: #soa[]T,
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data: #soa[]E,
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_end_index, len: int,
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_end_index, len: int,
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}
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}
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from_slice_raos :: #force_inline proc(data: $T/[]$E) -> Ring(E) {
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destroy_aos :: #force_inline proc(ring: ^Ring($E)) -> runtime.Allocator_Error {
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return {data = data, _end_index = -1}
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return delete(ring.data)
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}
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}
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from_slice_rsoa :: #force_inline proc(data: $T/#soa[]$E) -> Ring_Soa(E) {
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destroy_soa :: #force_inline proc(ring: ^Ring_Soa($E)) -> runtime.Allocator_Error {
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return {data = data, _end_index = -1}
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return delete(ring.data)
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}
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}
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from_slice :: proc {
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destroy :: proc {
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from_slice_raos,
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destroy_aos,
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from_slice_rsoa,
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destroy_soa,
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}
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create_aos :: #force_inline proc(
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$E: typeid,
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capacity: int,
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allocator := context.allocator,
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) -> (
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ring: Ring(E),
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err: runtime.Allocator_Error,
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) #optional_allocator_error {
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ring.data, err = make([]E, capacity, allocator)
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ring._end_index = -1
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return ring, err
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}
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create_soa :: #force_inline proc(
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$E: typeid,
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capacity: int,
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allocator := context.allocator,
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) -> (
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ring: Ring_Soa(E),
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err: runtime.Allocator_Error,
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) #optional_allocator_error {
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ring.data, err = make(#soa[]E, capacity, allocator)
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ring._end_index = -1
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return ring, err
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}
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init_from_slice_aos :: #force_inline proc(ring: ^Ring($E), data: $T/[]E) {
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ring.data = data
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ring.len = 0
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ring._end_index = -1
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return
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}
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init_from_slice_soa :: #force_inline proc(ring: ^Ring_Soa($E), data: $T/#soa[]E) {
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ring.data = data
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ring.len = 0
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ring._end_index = -1
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return
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}
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init_from_slice :: proc {
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init_from_slice_aos,
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init_from_slice_soa,
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}
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}
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// Index in the backing array where the ring starts
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// Index in the backing array where the ring starts
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_start_index_raos :: proc(ring: Ring($T)) -> int {
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_start_index_aos :: #force_inline proc(ring: Ring($E)) -> int {
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if ring.len < len(ring.data) {
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if ring.len < len(ring.data) {
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return 0
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return 0
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} else {
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} else {
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@@ -39,7 +85,7 @@ _start_index_raos :: proc(ring: Ring($T)) -> int {
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}
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}
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// Index in the backing array where the ring starts
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// Index in the backing array where the ring starts
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_start_index_rsoa :: proc(ring: Ring_Soa($T)) -> int {
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_start_index_soa :: #force_inline proc(ring: Ring_Soa($E)) -> int {
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if ring.len < len(ring.data) {
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if ring.len < len(ring.data) {
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return 0
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return 0
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} else {
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} else {
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@@ -48,7 +94,7 @@ _start_index_rsoa :: proc(ring: Ring_Soa($T)) -> int {
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}
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}
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}
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}
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advance_raos :: proc(ring: ^Ring($T)) {
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advance_aos :: #force_inline proc(ring: ^Ring($E)) {
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// Length
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// Length
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if ring.len != len(ring.data) do ring.len += 1
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if ring.len != len(ring.data) do ring.len += 1
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// End index
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// End index
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@@ -59,7 +105,7 @@ advance_raos :: proc(ring: ^Ring($T)) {
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}
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}
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}
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}
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advance_rsoa :: proc(ring: ^Ring_Soa($T)) {
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advance_soa :: #force_inline proc(ring: ^Ring_Soa($E)) {
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// Length
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// Length
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if ring.len != len(ring.data) do ring.len += 1
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if ring.len != len(ring.data) do ring.len += 1
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// End index
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// End index
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@@ -71,33 +117,31 @@ advance_rsoa :: proc(ring: ^Ring_Soa($T)) {
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}
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}
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advance :: proc {
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advance :: proc {
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advance_raos,
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advance_aos,
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advance_rsoa,
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advance_soa,
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}
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}
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append_raos :: proc(ring: ^Ring($T), element: T) {
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append_aos :: #force_inline proc(ring: ^Ring($E), element: E) {
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advance(ring)
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advance(ring)
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ring.data[ring._end_index] = element
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ring.data[ring._end_index] = element
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}
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}
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append_rsoa :: proc(ring: ^Ring_Soa($T), element: T) {
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append_soa :: #force_inline proc(ring: ^Ring_Soa($E), element: E) {
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advance(ring)
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advance(ring)
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ring.data[ring._end_index] = element
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ring.data[ring._end_index] = element
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}
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}
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append :: proc {
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append :: proc {
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append_raos,
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append_aos,
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append_rsoa,
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append_soa,
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}
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}
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get_raos :: proc(ring: Ring($T), index: int) -> ^T {
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get_aos :: #force_inline proc(ring: Ring($E), index: int) -> ^E {
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when ODIN_BOUNDS_CHECK {
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when ODIN_BOUNDS_CHECK {
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if index >= ring.len {
|
fmt.assertf(index < ring.len, "Ring index %i out of bounds for length %i", index, ring.len)
|
||||||
panic(fmt.tprintf("Ring index %i out of bounds for length %i", index, ring.len))
|
|
||||||
}
|
|
||||||
}
|
}
|
||||||
|
|
||||||
array_index := _start_index_raos(ring) + index
|
array_index := _start_index_aos(ring) + index
|
||||||
if array_index < len(ring.data) {
|
if array_index < len(ring.data) {
|
||||||
return &ring.data[array_index]
|
return &ring.data[array_index]
|
||||||
} else {
|
} else {
|
||||||
@@ -107,14 +151,12 @@ get_raos :: proc(ring: Ring($T), index: int) -> ^T {
|
|||||||
}
|
}
|
||||||
|
|
||||||
// SOA can't return soa pointer to parapoly T.
|
// SOA can't return soa pointer to parapoly T.
|
||||||
get_rsoa :: proc(ring: Ring_Soa($T), index: int) -> T {
|
get_soa :: #force_inline proc(ring: Ring_Soa($E), index: int) -> E {
|
||||||
when ODIN_BOUNDS_CHECK {
|
when ODIN_BOUNDS_CHECK {
|
||||||
if index >= ring.len {
|
fmt.assertf(index < ring.len, "Ring index %i out of bounds for length %i", index, ring.len)
|
||||||
panic(fmt.tprintf("Ring index %i out of bounds for length %i", index, ring.len))
|
|
||||||
}
|
|
||||||
}
|
}
|
||||||
|
|
||||||
array_index := _start_index_rsoa(ring) + index
|
array_index := _start_index_soa(ring) + index
|
||||||
if array_index < len(ring.data) {
|
if array_index < len(ring.data) {
|
||||||
return ring.data[array_index]
|
return ring.data[array_index]
|
||||||
} else {
|
} else {
|
||||||
@@ -124,36 +166,36 @@ get_rsoa :: proc(ring: Ring_Soa($T), index: int) -> T {
|
|||||||
}
|
}
|
||||||
|
|
||||||
get :: proc {
|
get :: proc {
|
||||||
get_raos,
|
get_aos,
|
||||||
get_rsoa,
|
get_soa,
|
||||||
}
|
}
|
||||||
|
|
||||||
get_last_raos :: #force_inline proc(ring: Ring($T)) -> ^T {
|
get_last_aos :: #force_inline proc(ring: Ring($E)) -> ^E {
|
||||||
return get(ring, ring.len - 1)
|
return get(ring, ring.len - 1)
|
||||||
}
|
}
|
||||||
|
|
||||||
get_last_rsoa :: #force_inline proc(ring: Ring_Soa($T)) -> T {
|
get_last_soa :: #force_inline proc(ring: Ring_Soa($E)) -> E {
|
||||||
return get(ring, ring.len - 1)
|
return get(ring, ring.len - 1)
|
||||||
}
|
}
|
||||||
|
|
||||||
get_last :: proc {
|
get_last :: proc {
|
||||||
get_last_raos,
|
get_last_aos,
|
||||||
get_last_rsoa,
|
get_last_soa,
|
||||||
}
|
}
|
||||||
|
|
||||||
clear_raos :: #force_inline proc "contextless" (ring: ^Ring($T)) {
|
clear_aos :: #force_inline proc "contextless" (ring: ^Ring($E)) {
|
||||||
ring.len = 0
|
ring.len = 0
|
||||||
ring._end_index = -1
|
ring._end_index = -1
|
||||||
}
|
}
|
||||||
|
|
||||||
clear_rsoa :: #force_inline proc "contextless" (ring: ^Ring_Soa($T)) {
|
clear_soa :: #force_inline proc "contextless" (ring: ^Ring_Soa($E)) {
|
||||||
ring.len = 0
|
ring.len = 0
|
||||||
ring._end_index = -1
|
ring._end_index = -1
|
||||||
}
|
}
|
||||||
|
|
||||||
clear :: proc {
|
clear :: proc {
|
||||||
clear_raos,
|
clear_aos,
|
||||||
clear_rsoa,
|
clear_soa,
|
||||||
}
|
}
|
||||||
|
|
||||||
// ---------------------------------------------------------------------------------------------------------------------
|
// ---------------------------------------------------------------------------------------------------------------------
|
||||||
@@ -164,14 +206,13 @@ import "core:testing"
|
|||||||
|
|
||||||
@(test)
|
@(test)
|
||||||
test_ring_aos :: proc(t: ^testing.T) {
|
test_ring_aos :: proc(t: ^testing.T) {
|
||||||
data := make_slice([]int, 10)
|
ring := create_aos(int, 10)
|
||||||
ring := from_slice(data)
|
defer destroy(&ring)
|
||||||
defer delete(ring.data)
|
|
||||||
|
|
||||||
for i in 1 ..= 5 {
|
for i in 1 ..= 5 {
|
||||||
append(&ring, i)
|
append(&ring, i)
|
||||||
log.debug("Length:", ring.len)
|
log.debug("Length:", ring.len)
|
||||||
log.debug("Start index:", _start_index_raos(ring))
|
log.debug("Start index:", _start_index_aos(ring))
|
||||||
log.debug("End index:", ring._end_index)
|
log.debug("End index:", ring._end_index)
|
||||||
log.debug(ring.data)
|
log.debug(ring.data)
|
||||||
}
|
}
|
||||||
@@ -179,12 +220,12 @@ test_ring_aos :: proc(t: ^testing.T) {
|
|||||||
testing.expect_value(t, get(ring, 4)^, 5)
|
testing.expect_value(t, get(ring, 4)^, 5)
|
||||||
testing.expect_value(t, ring.len, 5)
|
testing.expect_value(t, ring.len, 5)
|
||||||
testing.expect_value(t, ring._end_index, 4)
|
testing.expect_value(t, ring._end_index, 4)
|
||||||
testing.expect_value(t, _start_index_raos(ring), 0)
|
testing.expect_value(t, _start_index_aos(ring), 0)
|
||||||
|
|
||||||
for i in 6 ..= 15 {
|
for i in 6 ..= 15 {
|
||||||
append(&ring, i)
|
append(&ring, i)
|
||||||
log.debug("Length:", ring.len)
|
log.debug("Length:", ring.len)
|
||||||
log.debug("Start index:", _start_index_raos(ring))
|
log.debug("Start index:", _start_index_aos(ring))
|
||||||
log.debug("End index:", ring._end_index)
|
log.debug("End index:", ring._end_index)
|
||||||
log.debug(ring.data)
|
log.debug(ring.data)
|
||||||
}
|
}
|
||||||
@@ -194,12 +235,12 @@ test_ring_aos :: proc(t: ^testing.T) {
|
|||||||
testing.expect_value(t, get_last(ring)^, 15)
|
testing.expect_value(t, get_last(ring)^, 15)
|
||||||
testing.expect_value(t, ring.len, 10)
|
testing.expect_value(t, ring.len, 10)
|
||||||
testing.expect_value(t, ring._end_index, 4)
|
testing.expect_value(t, ring._end_index, 4)
|
||||||
testing.expect_value(t, _start_index_raos(ring), 5)
|
testing.expect_value(t, _start_index_aos(ring), 5)
|
||||||
|
|
||||||
for i in 15 ..= 25 {
|
for i in 15 ..= 25 {
|
||||||
append(&ring, i)
|
append(&ring, i)
|
||||||
log.debug("Length:", ring.len)
|
log.debug("Length:", ring.len)
|
||||||
log.debug("Start index:", _start_index_raos(ring))
|
log.debug("Start index:", _start_index_aos(ring))
|
||||||
log.debug("End index:", ring._end_index)
|
log.debug("End index:", ring._end_index)
|
||||||
log.debug(ring.data)
|
log.debug(ring.data)
|
||||||
}
|
}
|
||||||
@@ -219,14 +260,13 @@ test_ring_soa :: proc(t: ^testing.T) {
|
|||||||
x, y: int,
|
x, y: int,
|
||||||
}
|
}
|
||||||
|
|
||||||
data := make_soa_slice(#soa[]Ints, 10)
|
ring := create_soa(Ints, 10)
|
||||||
ring := from_slice(data)
|
defer destroy(&ring)
|
||||||
defer delete(ring.data)
|
|
||||||
|
|
||||||
for i in 1 ..= 5 {
|
for i in 1 ..= 5 {
|
||||||
append(&ring, Ints{i, i})
|
append(&ring, Ints{i, i})
|
||||||
log.debug("Length:", ring.len)
|
log.debug("Length:", ring.len)
|
||||||
log.debug("Start index:", _start_index_rsoa(ring))
|
log.debug("Start index:", _start_index_soa(ring))
|
||||||
log.debug("End index:", ring._end_index)
|
log.debug("End index:", ring._end_index)
|
||||||
log.debug(ring.data)
|
log.debug(ring.data)
|
||||||
}
|
}
|
||||||
@@ -234,12 +274,12 @@ test_ring_soa :: proc(t: ^testing.T) {
|
|||||||
testing.expect_value(t, get(ring, 4), Ints{5, 5})
|
testing.expect_value(t, get(ring, 4), Ints{5, 5})
|
||||||
testing.expect_value(t, ring.len, 5)
|
testing.expect_value(t, ring.len, 5)
|
||||||
testing.expect_value(t, ring._end_index, 4)
|
testing.expect_value(t, ring._end_index, 4)
|
||||||
testing.expect_value(t, _start_index_rsoa(ring), 0)
|
testing.expect_value(t, _start_index_soa(ring), 0)
|
||||||
|
|
||||||
for i in 6 ..= 15 {
|
for i in 6 ..= 15 {
|
||||||
append(&ring, Ints{i, i})
|
append(&ring, Ints{i, i})
|
||||||
log.debug("Length:", ring.len)
|
log.debug("Length:", ring.len)
|
||||||
log.debug("Start index:", _start_index_rsoa(ring))
|
log.debug("Start index:", _start_index_soa(ring))
|
||||||
log.debug("End index:", ring._end_index)
|
log.debug("End index:", ring._end_index)
|
||||||
log.debug(ring.data)
|
log.debug(ring.data)
|
||||||
}
|
}
|
||||||
@@ -249,12 +289,12 @@ test_ring_soa :: proc(t: ^testing.T) {
|
|||||||
testing.expect_value(t, get_last(ring), Ints{15, 15})
|
testing.expect_value(t, get_last(ring), Ints{15, 15})
|
||||||
testing.expect_value(t, ring.len, 10)
|
testing.expect_value(t, ring.len, 10)
|
||||||
testing.expect_value(t, ring._end_index, 4)
|
testing.expect_value(t, ring._end_index, 4)
|
||||||
testing.expect_value(t, _start_index_rsoa(ring), 5)
|
testing.expect_value(t, _start_index_soa(ring), 5)
|
||||||
|
|
||||||
for i in 15 ..= 25 {
|
for i in 15 ..= 25 {
|
||||||
append(&ring, Ints{i, i})
|
append(&ring, Ints{i, i})
|
||||||
log.debug("Length:", ring.len)
|
log.debug("Length:", ring.len)
|
||||||
log.debug("Start index:", _start_index_rsoa(ring))
|
log.debug("Start index:", _start_index_soa(ring))
|
||||||
log.debug("End index:", ring._end_index)
|
log.debug("End index:", ring._end_index)
|
||||||
log.debug(ring.data)
|
log.debug(ring.data)
|
||||||
}
|
}
|
||||||
|
|||||||
Reference in New Issue
Block a user