about summary refs log tree commit diff
path: root/assets/src/components/share/DataSelector.svelte
AgeCommit message (Expand)Author
2022-02-19Split state into stages to handle messagesMel
2021-07-08State display for incoming and own requestsMelonai
38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173
package mem

type Mem interface {
	Allocate(kind CellKind) (Ptr, error)
	AllocateAt(ptr Ptr, kind CellKind) error

	Set(ptr Ptr, v CellData) error
	Get(ptr Ptr) (CellData, error)
	Is(ptr Ptr, kind CellKind) bool
	Kind(ptr Ptr) CellKind

	Retain(ptr Ptr) error
	Release(ptr Ptr) error
	RefCount(ptr Ptr) int
}

type memImpl struct {
	cells []cell
	free  []Ptr
}

func New() Mem {
	cells := make([]cell, 1)

	// Reserve NullPtr
	cells[NullPtr].kind = CellKindForbidden

	return &memImpl{
		cells: cells,
		free:  make([]Ptr, 0),
	}
}

func (m *memImpl) Allocate(kind CellKind) (Ptr, error) {
	if kind == CellKindForbidden || kind == CellKindEmpty {
		return NullPtr, ErrInvalidCellKind{kind}
	}

	if len(m.free) > 0 {
		idx := m.free[len(m.free)-1]
		m.free = m.free[:len(m.free)-1]

		if m.cells[idx].kind != CellKindEmpty {
			// This should never happen.
			panic("cell marked as free was not empty")
		}

		m.cells[idx] = cell{kind: kind, refs: 1}
		return Ptr(idx), nil
	} else {
		if len(m.cells) > 10000 {
			return NullPtr, ErrMemOverflow
		}

		idx := len(m.cells)
		m.cells = append(m.cells, cell{kind: kind, refs: 1})
		return Ptr(idx), nil
	}
}

func (m *memImpl) AllocateAt(ptr Ptr, kind CellKind) error {
	if kind == CellKindForbidden || kind == CellKindEmpty {
		return ErrInvalidCellKind{kind}
	}

	if ptr < Ptr(len(m.cells)) && m.cells[ptr].kind != CellKindEmpty {
		return ErrInvalidMemAccess{ptr}
	}

	if ptr > 10000 {
		return ErrMemOverflow
	}

	if ptr >= Ptr(len(m.cells)) {
		m.cells = append(m.cells, make([]cell, ptr-Ptr(len(m.cells))+1)...)
	}

	m.cells[ptr] = cell{kind: kind, refs: 1}

	// Remove cell from free list, if it was there.
	for i, f := range m.free {
		if f == ptr {
			m.free = append(m.free[:i], m.free[i+1:]...)
			break
		}
	}

	return nil
}

func (m *memImpl) Set(ptr Ptr, v CellData) error {
	if err := m.validPtr(ptr); err != nil {
		return err
	}

	if m.cells[ptr].kind != v.MatchingCellKind() {
		return ErrDifferingCellKind{Ptr: ptr, Expected: m.cells[ptr].kind, Got: v.MatchingCellKind()}
	}

	m.cells[ptr].data = v
	return nil
}

func (m *memImpl) Get(ptr Ptr) (CellData, error) {
	if err := m.validPtr(ptr); err != nil {
		return nil, err
	}

	return m.cells[ptr].data, nil
}

func (m *memImpl) Is(ptr Ptr, kind CellKind) bool {
	if ptr >= Ptr(len(m.cells)) {
		return kind == CellKindEmpty
	}

	return m.cells[ptr].kind == kind
}

func (m *memImpl) Kind(ptr Ptr) CellKind {
	if ptr >= Ptr(len(m.cells)) {
		return CellKindEmpty
	}

	return m.cells[ptr].kind
}

func (m *memImpl) Retain(ptr Ptr) error {
	if err := m.validPtr(ptr); err != nil {
		return err
	}

	m.cells[ptr].refs++
	return nil
}

func (m *memImpl) Release(ptr Ptr) error {
	if err := m.validPtr(ptr); err != nil {
		return err
	}

	m.cells[ptr].refs--
	if m.cells[ptr].refs == 0 {
		c := m.cells[ptr].data
		c.DropCell(m)

		m.cells[ptr] = cell{}
		m.free = append(m.free, ptr)
	}

	return nil
}

func (m *memImpl) RefCount(ptr Ptr) int {
	if err := m.validPtr(ptr); err != nil {
		return 0
	}

	return m.cells[ptr].refs
}

func (m *memImpl) validPtr(ptr Ptr) error {
	if ptr >= Ptr(len(m.cells)) {
		return ErrInvalidMemAccess{ptr}
	}

	kind := m.cells[ptr].kind
	if kind == CellKindForbidden || kind == CellKindEmpty {
		return ErrInvalidMemAccess{ptr}
	}

	return nil
}