Change in profit — volume, margin and cost components
SCHW
Change in profit — volume, margin and cost components
Driver walk — volume, margin and the cost drivers behind it
$bn / ppPre-tax — profit bridge 2024 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY24 7.69 → FY25 11.46, change 3.77.
- Volume 2.07
- Margin 1.70
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin margin-first: vol = Δrev·m₁, margin = r₀·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — profit bridge 2024 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY24 7.69 → FY25 11.46, change 3.77.
- Volume 1.88
- Margin 1.89
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin by Shapley: vol = ½·Δrev·(m₀+m₁), margin = ½·(r₀+r₁)·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — profit bridge 2024 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY24 7.69 → FY25 11.46, change 3.77.
- Volume 2.07
- Noninterest expense 1.70
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin margin-first: vol = Δrev·m₁, margin = r₀·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — profit bridge 2024 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY24 7.69 → FY25 11.46, change 3.77.
- Volume 1.88
- Noninterest expense 1.89
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin by Shapley: vol = ½·Δrev·(m₀+m₁), margin = ½·(r₀+r₁)·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — margin bridge 2024 → 2025
The same question in percentage points of margin. The volume effect is necessarily absent — more revenue alone does not change the margin; what remains are the cost ratios.
Shown: FY24 39.23% → FY25 47.90%, change 8.67%.
- Noninterest expense 8.67%
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — profit bridge 2023 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY23 6.38 → FY25 11.46, change 5.08.
- Volume 2.44
- Margin 2.65
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin margin-first: vol = Δrev·m₁, margin = r₀·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — profit bridge 2023 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY23 6.38 → FY25 11.46, change 5.08.
- Volume 2.08
- Margin 3.00
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin by Shapley: vol = ½·Δrev·(m₀+m₁), margin = ½·(r₀+r₁)·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — profit bridge 2023 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY23 6.38 → FY25 11.46, change 5.08.
- Volume 2.44
- Noninterest expense 2.65
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin margin-first: vol = Δrev·m₁, margin = r₀·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — profit bridge 2023 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY23 6.38 → FY25 11.46, change 5.08.
- Volume 2.08
- Noninterest expense 3.00
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin by Shapley: vol = ½·Δrev·(m₀+m₁), margin = ½·(r₀+r₁)·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — margin bridge 2023 → 2025
The same question in percentage points of margin. The volume effect is necessarily absent — more revenue alone does not change the margin; what remains are the cost ratios.
Shown: FY23 33.86% → FY25 47.90%, change 14.04%.
- Noninterest expense 14.04%
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — profit bridge 2022 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY22 9.39 → FY25 11.46, change 2.07.
- Volume 1.51
- Margin 0.56
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin margin-first: vol = Δrev·m₁, margin = r₀·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — profit bridge 2022 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY22 9.39 → FY25 11.46, change 2.07.
- Volume 1.47
- Margin 0.60
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin by Shapley: vol = ½·Δrev·(m₀+m₁), margin = ½·(r₀+r₁)·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — profit bridge 2022 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY22 9.39 → FY25 11.46, change 2.07.
- Volume 1.51
- Noninterest expense 0.56
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin margin-first: vol = Δrev·m₁, margin = r₀·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — profit bridge 2022 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY22 9.39 → FY25 11.46, change 2.07.
- Volume 1.47
- Noninterest expense 0.60
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin by Shapley: vol = ½·Δrev·(m₀+m₁), margin = ½·(r₀+r₁)·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Pre-tax — margin bridge 2022 → 2025
The same question in percentage points of margin. The volume effect is necessarily absent — more revenue alone does not change the margin; what remains are the cost ratios.
Shown: FY22 45.22% → FY25 47.90%, change 2.69%.
- Noninterest expense 2.69%
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — profit bridge 2024 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY24 5.94 → FY25 8.85, change 2.91.
- Volume 1.60
- Margin 1.31
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin margin-first: vol = Δrev·m₁, margin = r₀·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — profit bridge 2024 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY24 5.94 → FY25 8.85, change 2.91.
- Volume 1.45
- Margin 1.46
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin by Shapley: vol = ½·Δrev·(m₀+m₁), margin = ½·(r₀+r₁)·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — profit bridge 2024 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY24 5.94 → FY25 8.85, change 2.91.
- Volume 1.60
- Noninterest expense 1.70
- Income tax -0.39
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin margin-first: vol = Δrev·m₁, margin = r₀·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — profit bridge 2024 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY24 5.94 → FY25 8.85, change 2.91.
- Volume 1.45
- Noninterest expense 1.89
- Income tax -0.43
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin by Shapley: vol = ½·Δrev·(m₀+m₁), margin = ½·(r₀+r₁)·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — margin bridge 2024 → 2025
The same question in percentage points of margin. The volume effect is necessarily absent — more revenue alone does not change the margin; what remains are the cost ratios.
Shown: FY24 30.31% → FY25 37.01%, change 6.70%.
- Noninterest expense 8.67%
- Income tax -1.97%
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — profit bridge 2023 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY23 5.07 → FY25 8.85, change 3.79.
- Volume 1.88
- Margin 1.90
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin margin-first: vol = Δrev·m₁, margin = r₀·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — profit bridge 2023 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY23 5.07 → FY25 8.85, change 3.78.
- Volume 1.62
- Margin 2.16
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin by Shapley: vol = ½·Δrev·(m₀+m₁), margin = ½·(r₀+r₁)·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — profit bridge 2023 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY23 5.07 → FY25 8.85, change 3.79.
- Volume 1.88
- Noninterest expense 2.65
- Income tax -0.74
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin margin-first: vol = Δrev·m₁, margin = r₀·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — profit bridge 2023 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY23 5.07 → FY25 8.85, change 3.78.
- Volume 1.62
- Noninterest expense 3.00
- Income tax -0.84
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin by Shapley: vol = ½·Δrev·(m₀+m₁), margin = ½·(r₀+r₁)·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — margin bridge 2023 → 2025
The same question in percentage points of margin. The volume effect is necessarily absent — more revenue alone does not change the margin; what remains are the cost ratios.
Shown: FY23 26.90% → FY25 37.01%, change 10.11%.
- Noninterest expense 14.04%
- Income tax -3.94%
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — profit bridge 2022 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY22 7.18 → FY25 8.85, change 1.67.
- Volume 1.17
- Margin 0.50
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin margin-first: vol = Δrev·m₁, margin = r₀·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — profit bridge 2022 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY22 7.18 → FY25 8.85, change 1.67.
- Volume 1.13
- Margin 0.54
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin by Shapley: vol = ½·Δrev·(m₀+m₁), margin = ½·(r₀+r₁)·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — profit bridge 2022 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY22 7.18 → FY25 8.85, change 1.67.
- Volume 1.17
- Noninterest expense 0.56
- Income tax -0.06
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin margin-first: vol = Δrev·m₁, margin = r₀·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — profit bridge 2022 → 2025
Why profit moved: profit = revenue × margin. The bridge separates the volume effect from the margin effect and breaks the margin effect into the individual cost blocks.
Shown: FY22 7.18 → FY25 8.85, change 1.67.
- Volume 1.13
- Noninterest expense 0.60
- Income tax -0.06
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Volume/margin by Shapley: vol = ½·Δrev·(m₀+m₁), margin = ½·(r₀+r₁)·Δm. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Net income — margin bridge 2022 → 2025
The same question in percentage points of margin. The volume effect is necessarily absent — more revenue alone does not change the margin; what remains are the cost ratios.
Shown: FY22 34.60% → FY25 37.01%, change 2.41%.
- Noninterest expense 2.69%
- Income tax -0.28%
Left to right: the first bar is the opening value, the middle bars are changes (up = increasing, down = decreasing), the last is the closing value. The changes sum to the difference exactly — no unexplained residual remains. The value axis is broken near zero so the contributions stay visible next to the large opening and closing bars; bar lengths are therefore not proportional to absolute value.
A cost step contributes −Rev₀·Δ(step/Rev); tagged sub-lines are shown individually and reconcile to the step. Consolidated P&L, annual durations only. Source: SEC EDGAR companyfacts · filings 2009–2026
Common-size P&L — the two compared years
$bn · % of revenue| $bn | FY24 | FY25 | % rev FY24 | % rev FY25 | Δpp |
|---|---|---|---|---|---|
| Revenue | 19.61 | 23.92 | 100.0% | 100.0% | +0.0pp |
| Noninterest expense | 11.91 | 12.46 | 60.8% | 52.1% | -8.7pp |
| Income tax | 1.75 | 2.61 | 8.9% | 10.9% | +2.0pp |
| Net income | 5.94 | 8.85 | 30.3% | 37.0% | +6.7pp |
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