task.rs 3.6 KB

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  1. //! Verify that tasks get polled by the virtualdom properly, and that we escape wait_for_work safely
  2. use std::{sync::atomic::AtomicUsize, time::Duration};
  3. use dioxus::prelude::*;
  4. async fn run_vdom(app: fn() -> Element) {
  5. let mut dom = VirtualDom::new(app);
  6. dom.rebuild(&mut dioxus_core::NoOpMutations);
  7. tokio::select! {
  8. _ = dom.wait_for_work() => {}
  9. _ = tokio::time::sleep(Duration::from_millis(500)) => {}
  10. };
  11. }
  12. #[tokio::test]
  13. async fn it_works() {
  14. static POLL_COUNT: AtomicUsize = AtomicUsize::new(0);
  15. fn app() -> Element {
  16. use_hook(|| {
  17. spawn(async {
  18. for x in 0..10 {
  19. tokio::time::sleep(Duration::from_micros(50)).await;
  20. POLL_COUNT.fetch_add(x, std::sync::atomic::Ordering::Relaxed);
  21. }
  22. });
  23. spawn(async {
  24. for x in 0..10 {
  25. tokio::time::sleep(Duration::from_micros(25)).await;
  26. POLL_COUNT.fetch_add(x * 2, std::sync::atomic::Ordering::Relaxed);
  27. }
  28. });
  29. });
  30. rsx!({ () })
  31. }
  32. run_vdom(app).await;
  33. // By the time the tasks are finished, we should've accumulated ticks from two tasks
  34. // Be warned that by setting the delay to too short, tokio might not schedule in the tasks
  35. assert_eq!(
  36. POLL_COUNT.fetch_add(0, std::sync::atomic::Ordering::Relaxed),
  37. 135
  38. );
  39. }
  40. /// Prove that yield_now doesn't cause a deadlock
  41. #[tokio::test]
  42. async fn yield_now_works() {
  43. thread_local! {
  44. static SEQUENCE: std::cell::RefCell<Vec<usize>> = std::cell::RefCell::new(Vec::new());
  45. }
  46. fn app() -> Element {
  47. // these two tasks should yield to eachother
  48. use_hook(|| {
  49. spawn(async move {
  50. for _ in 0..10 {
  51. tokio::task::yield_now().await;
  52. SEQUENCE.with(|s| s.borrow_mut().push(1));
  53. }
  54. })
  55. });
  56. use_hook(|| {
  57. spawn(async move {
  58. for _ in 0..10 {
  59. tokio::task::yield_now().await;
  60. SEQUENCE.with(|s| s.borrow_mut().push(2));
  61. }
  62. })
  63. });
  64. rsx!({ () })
  65. }
  66. run_vdom(app).await;
  67. SEQUENCE.with(|s| assert_eq!(s.borrow().len(), 20));
  68. }
  69. /// Ensure that calling wait_for_flush waits for dioxus to finish its syncrhonous work
  70. #[tokio::test]
  71. async fn flushing() {
  72. thread_local! {
  73. static SEQUENCE: std::cell::RefCell<Vec<usize>> = std::cell::RefCell::new(Vec::new());
  74. }
  75. fn app() -> Element {
  76. use_hook(|| {
  77. spawn(async move {
  78. for _ in 0..10 {
  79. flush_sync().await;
  80. SEQUENCE.with(|s| s.borrow_mut().push(1));
  81. }
  82. })
  83. });
  84. use_hook(|| {
  85. spawn(async move {
  86. for _ in 0..10 {
  87. flush_sync().await;
  88. SEQUENCE.with(|s| s.borrow_mut().push(2));
  89. }
  90. })
  91. });
  92. rsx!({ () })
  93. }
  94. let mut dom = VirtualDom::new(app);
  95. dom.rebuild(&mut dioxus_core::NoOpMutations);
  96. let fut = async {
  97. // Trigger the flush by waiting for work
  98. for _ in 0..40 {
  99. tokio::select! {
  100. _ = dom.wait_for_work() => {}
  101. _ = tokio::time::sleep(Duration::from_millis(1)) => {}
  102. };
  103. }
  104. };
  105. tokio::select! {
  106. _ = fut => {}
  107. _ = tokio::time::sleep(Duration::from_millis(500)) => {}
  108. };
  109. SEQUENCE.with(|s| assert_eq!(s.borrow().len(), 20));
  110. }