307 lines
5.7 KiB
Go
307 lines
5.7 KiB
Go
package notation
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import "strings"
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func unwrappable(n node) bool {
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return n.len == n.wrapLen.max &&
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n.len == n.fullWrap.max
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}
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func initialize(t *int, v int) {
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if *t > 0 {
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return
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}
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*t = v
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}
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func max(t *int, v int) {
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if *t >= v {
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return
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}
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*t = v
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}
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func nodeLen(t int, n node) node {
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var w, f int
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for i, p := range n.parts {
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switch part := p.(type) {
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case string:
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n.len += len(part)
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w += len(part)
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f += len(part)
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case str:
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// We assume here that an str is always contained by a node that has only a
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// single str.
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//
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// If this changes in the future, then we need to provide tests for the
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// additional cases. If this doesn't change anytime soon, then we can
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// refactor this part.
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//
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n.len = len(part.val)
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if part.raw == "" {
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w = len(part.val)
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f = len(part.val)
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} else {
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lines := strings.Split(part.raw, "\n")
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part.rawLen.first = len(lines[0])
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for _, line := range lines {
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if len(line) > part.rawLen.max {
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part.rawLen.max = len(line)
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}
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}
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part.rawLen.last = len(lines[len(lines)-1])
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n.parts[i] = part
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n.wrapLen.first = part.rawLen.first
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n.fullWrap.first = part.rawLen.first
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n.wrapLen.max = part.rawLen.max
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n.fullWrap.max = part.rawLen.max
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w = part.rawLen.last
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f = part.rawLen.last
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}
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case node:
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part = nodeLen(t, part)
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n.parts[i] = part
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n.len += part.len
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if unwrappable(part) {
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w += part.len
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f += part.len
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continue
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}
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if part.len == part.wrapLen.max {
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w += part.len
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} else {
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w += part.wrapLen.first
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initialize(&n.wrapLen.first, w)
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max(&n.wrapLen.max, w)
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w = part.wrapLen.last
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}
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f += part.fullWrap.first
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initialize(&n.fullWrap.first, f)
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max(&n.fullWrap.max, f)
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f = part.fullWrap.last
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case wrapper:
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if len(part.items) == 0 {
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continue
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}
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initialize(&n.wrapLen.first, w)
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max(&n.wrapLen.max, w)
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initialize(&n.fullWrap.first, f)
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max(&n.fullWrap.max, f)
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w, f = 0, 0
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n.len += (len(part.items) - 1) * len(part.sep)
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if part.mode == line {
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w += (len(part.items) - 1) * len(part.sep)
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}
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for j, item := range part.items {
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item = nodeLen(t, item)
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part.items[j] = item
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n.len += item.len
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switch part.mode {
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case line:
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w += item.len
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max(&f, item.len)
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default:
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wj := t + item.len + len(part.suffix)
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max(&w, wj)
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fj := t + item.fullWrap.max
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max(&f, fj)
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fj = t + item.fullWrap.last + len(part.suffix)
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max(&f, fj)
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}
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}
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max(&n.wrapLen.max, w)
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max(&n.fullWrap.max, f)
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w, f = 0, 0
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}
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}
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initialize(&n.wrapLen.first, w)
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max(&n.wrapLen.max, w)
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n.wrapLen.last = w
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initialize(&n.fullWrap.first, f)
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max(&n.fullWrap.max, f)
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n.fullWrap.last = f
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return n
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}
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func wrapNode(t, cf0, c0, c1 int, n node) node {
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if n.len <= c0 {
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return n
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}
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if n.wrapLen.max >= n.len && n.fullWrap.max >= n.len {
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return n
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}
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if n.len <= c1 && n.len-c0 <= n.wrapLen.max {
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return n
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}
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n.wrap = true
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cc0, cc1 := c0, c1
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lastWrapperIndex := -1
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var trackBack bool
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for i := 0; i < len(n.parts); i++ {
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p := n.parts[i]
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switch part := p.(type) {
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case string:
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cc0 -= len(part)
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cc1 -= len(part)
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if !trackBack && cc1 < 0 {
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cc0 = 0
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cc1 = 0
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i = lastWrapperIndex
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trackBack = true
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}
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case str:
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// We assume here that an str is always contained by a node that has only a
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// single str. Therefore we don't need to trackback to here, because the
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// decision on wrapping was already made for the node.
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//
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// If this changes in the future, then we need to provide tests for the
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// additional cases. If this doesn't change anytime soon, then we can
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// refactor this part.
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//
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part.useRaw = part.raw != ""
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n.parts[i] = part
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case node:
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part = wrapNode(t, cf0, cc0, cc1, part)
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n.parts[i] = part
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if part.wrap {
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// This is an approximation: sometimes part.fullWrap.first should be applied
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// here, but usually those are the same.
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cc0 -= part.wrapLen.first
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cc1 -= part.wrapLen.first
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} else {
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cc0 -= part.len
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cc1 -= part.len
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}
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if !trackBack && cc1 < 0 {
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cc0 = 0
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cc1 = 0
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i = lastWrapperIndex
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trackBack = true
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}
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case wrapper:
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if len(part.items) == 0 {
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continue
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}
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cc0, cc1 = c0, c1
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trackBack = false
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lastWrapperIndex = i
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switch part.mode {
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case line:
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cl := cf0 - t
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var w int
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for j, ni := range part.items {
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if w > 0 && w+len(part.sep)+ni.len > cl {
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w = 0
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part.lineEnds = append(
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part.lineEnds,
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j,
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)
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}
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if w > 0 {
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w += len(part.sep)
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}
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w += ni.len
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}
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part.lineEnds = append(part.lineEnds, len(part.items))
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n.parts[i] = part
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default:
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for j := range part.items {
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part.items[j] = wrapNode(
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t,
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cf0,
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c0-t,
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c1-t,
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part.items[j],
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)
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}
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}
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}
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}
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return n
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}
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func fprint(w *writer, t int, n node) {
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if w.err != nil {
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return
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}
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for _, p := range n.parts {
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switch part := p.(type) {
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case node:
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fprint(w, t, part)
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case wrapper:
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if len(part.items) == 0 {
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continue
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}
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if !n.wrap {
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for i, ni := range part.items {
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if i > 0 {
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w.write(part.sep)
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}
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fprint(w, t, ni)
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}
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continue
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}
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switch part.mode {
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case line:
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var (
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lines [][]node
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last int
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)
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for _, i := range part.lineEnds {
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lines = append(lines, part.items[last:i])
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last = i
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}
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for _, line := range lines {
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w.blankLine()
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w.tabs(1)
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for i, ni := range line {
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if i > 0 {
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w.write(part.sep)
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}
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fprint(w, 0, ni)
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}
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}
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default:
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t++
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for _, ni := range part.items {
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w.line(t)
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fprint(w, t, ni)
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w.write(part.suffix)
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}
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t--
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}
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w.line(t)
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default:
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w.write(part)
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}
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}
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}
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